学術論文(査読付き)  Peer-reviewed papers

* Mark = Corresponding author

  ~2024~
[129]

Jun Nakagawa, Seiya Morinaga, and Yoshiro Kaneko*:

"Preparation of antifog hard coatings based on carboxy-functionalized polyhedral oligomeric silsesquioxane cross-linked with oligo(ethylene glycol)s",

ACS Omega, vol. 9, pp. 28895-28902 (2024. 6). URL

[128]

Kanako Sonoda, Norimitsu Tohnai, and Yoshiro Kaneko*:

"Stereoselective synthesis of different cyclic tetrasiloxane isomers depending on the superacid catalyst employed",

Dalton Transactions, vol. 53, pp. 8709-8715 (2024. 5). URL

   
  ~2023~
[127]

Takashi Hamada,* Tetsuya Maeda, Kazuaki Kawashima, Tetsuya Sugimoto, Arata Tanaka, Yuko Tanaka, Daiji Katsura, Susumu Mineoi, Yoshiro Kaneko, and Joji Ohshita*:

"Effect of the amine hydrochloride salt on the antifogging properties of amino-functionalized polysilsesquioxane",

ACS Applied Polymer Materials, vol. 5, pp. 1596-1605 (2023. 1). URL

[126]

Yoshiro Kaneko*:

"Ionic liquids containing silsesquioxane and cyclic siloxane frameworks",

The Chemical Record, vol. 23, e202200291 (2023. 1). URL

(Special Issue: Modern Aspects of Ionic Liquids). Invited

   
 

~2022~

[125]

Yoshiro Kaneko*:

"Superacid-catalyzed preparation of ionic polyhedral oligomeric silsesquioxanes and their properties, polymerization, and hybridization",

Journal of Sol-Gel Science and Technology, vol. 104, pp. 588-598 (2022. 5). URL

(Special Issue: Topical Collection "Sol-Gel Research in Japan"). Invited

[124]

Kazuki Yamamoto*, Yunosuke Amaike, Miyuki Tani, Ibuki Saito, Tomoya Kozuma, Yoshiro Kaneko, and Takahiro Gunji*:

"Bridged organosilica membranes incorporating carboxyl-functionalized cage silsesquioxanes for water desalination",

Journal of Sol-Gel Science and Technology, vol. 101, pp. 315-322 (2022. 2). URL

[123]

Misaki Nobayashi, Kazuhiro Shikinaka, and Yoshiro Kaneko*:

"Preparation of double-chain polysiloxane by template polymerization and coexistence of water repellency and adhesion to glass in its cast film",

Polymer Journal, vol. 54, pp. 11-20 (2022. 1). URL

   
 

~2021~

[122]

Tomoya Kozuma, Aki Mihata, and Yoshiro Kaneko*:

"Preparation of soluble POSS-linking polyamide and its application in antifogging films",

Materials, vol. 14, 3178 (2021. 6). URL

(Special Issue "Silsesquioxanes—Precursors to Functional Materials: Synthesis and Applications—a Themed Issue to Honor Professor Bogdan Marciniec on the Occasion of His 80th Birthday"). Invited

[121]

Shinya Anraku, Yoshiro Kaneko, and Nobuyoshi Miyamoto*:

"Grafting of fluorescence-labeled ssDNA onto inorganic nanosheets and detection of a target DNA",

Chemistry Letters, vol. 50, pp. 632-635 (2021. 4). URL

   
  ~2020~
[120]

Takatoshi Matsumoto and Yoshiro Kaneko*:

"Correlation between molecular structures and reaction conditions (temperature-pressure-time) in the preparation of secondary, tertiary, and quaternary ammonium-functionalized polyhedral oligomeric silsesquioxanes",

Journal of Sol-Gel Science and Technology, vol. 95, pp. 670-681 (2020. 6). URL

(Special Issue: 2019 XX Sol-Gel meeting St. Petersburg). Invited

[119]

Taishi Nakahara and Yoshiro Kaneko*:

"Superacid-catalyzed preparation of highly dispersible zirconium oxide and titanium oxide nanoparticles without hydrocarbon units",

Journal of Nanoscience and Nanotechnology, vol. 20, pp. 2755-2762 (2020. 5). URL

   
  ~2019~
[118]

Tomoya Kozuma and Yoshiro Kaneko*:

"Preparation of carboxyl-functionalized polyhedral oligomeric silsesquioxane by a structural transformation reaction from soluble rod-like polysilsesquioxane",

Journal of Polymer Science Part A: Polymer Chemistry, vol. 57, 2511-2518 (2019. 12). URL

(Special Issue in Honor of Professor Takeshi Endo). Invited

[117]

Ryoya Hasebe and Yoshiro Kaneko*:

"Control of crystalline-amorphous structures of polyhedral oligomeric silsesquioxanes containing two types of ammonium side-chain groups and their properties as protic ionic liquids",

Molecules, vol. 24, 4553 (2019.12). URL

(Special Issue: Synthesis of Functional Silicon Compounds). Invited

[116]

Yusaku Sainohira, Koki Fujino, Atsushi Shimojima, Kazuyuki Kuroda, and Yoshiro Kaneko*:

"Preparation of CO₂-adsorbable amine-functionalized polysilsesquioxanes containing cross-linked structures without using surfactants and strong acid or base catalysts",

Journal of Sol-Gel Science and Technology, vol. 91, pp. 505-513 (2019. 7). URL

[115]

Takatoshi Matsumoto and Yoshiro Kaneko*:

"Effect of reaction temperature and time on the preferential preparation of cage octamer and decamer of ammonium-functionalized POSSs",

Bulletin of the Chemical Society of Japan, vol. 92, pp. 1060-1067 (2019. 6). URL

[114]

Daisuke Maeda, Kimihiro Matsukawa, Yasunari Kusaka, and Yoshiro Kaneko*:

"Preparation of a soluble polysilsesquioxane containing macrocyclic structure and capture of palladium ion",

Polymer Journal, vol. 51, pp. 439-447 (2019.3). URL

   
  ~2018~
[113]

Jiahao Liu and Yoshiro Kaneko*:

"Preparation of polyhedral oligomeric silsesquioxanes containing carboxyl side-chain groups and isolation of a cage-like octamer using clay mineral",

Bulletin of the Chemical Society of Japanvol. 91, pp. 1120-1127 (2018. 6). URL

[112]

Daisuke Maeda, Takuhiro Ishii, and Yoshiro Kaneko*:

"Effect of lengths of substituents in imidazolium groups on the preparation of imidazolium-salt-type ionic liquids containing polyhedral oligomeric silsesquioxane structures",

Bulletin of the Chemical Society of Japanvol. 91, pp. 1112-1119 (2018. 6). URL

[111]

Takatoshi Matsumoto and Yoshiro Kaneko*:

"Selective and high-yielding preparation of ammonium-functionalized cage-like octasilsesquioxanes using superacid catalyst in dimethyl sulfoxide",

Chemistry Letters, vol. 47, pp. 864-867 (2018. 6). URL

[110]

Yoshiro Kaneko*:

"Ionic silsesquioxanes: preparation, structure control, characterization, and applications",

Polymer, vol. 144, pp. 205-224 (2018. 5). URL

Feature Article (Invited)

[109]

Makoto Yanagie and Yoshiro Kaneko*:

"Preparation of irrefrangible polyacrylamide hybrid hydrogels using water-dispersible cyclotetrasiloxane or polyhedral oligomeric silsesquioxane containing polymerizable groups as cross-linkers",

Polymer Chemistry, vol. 9, pp. 2302-2312 (2018. 4). URL

   
  ~2017~
[108]

Kazuki Yamamoto, Sayako Koge, Kenji Sasahara, Tomonobu Mizumo, Yoshiro Kaneko, Masakoto Kanezashi, Toshinori Tsuru*, and Joji Ohshita*:

"Preparation of bridged polysilsesquioxane membranes from bis[3-(triethoxysilyl)propyl]amine for water desalination",

Bulletin of the Chemical Society of Japanvol. 90, pp. 1035-1040 (2017. 6).

[107]

Akiyuki Harada, Kazuhiro Shikinaka, Joji Ohshita, and Yoshiro Kaneko*:

"Preparation of a one-dimensional soluble polysilsesquioxane containing phosphonic acid side-chain groups and its thermal and proton-conduction properties",

Polymer, vol. 121, pp. 228-233 (2017. 6). URL

[106]

Kenta Imai and Yoshiro Kaneko*:

"Preparation of ammonium-functionalized polyhedral oligomeric silsesquioxanes with high proportions of cagelike decamer and their facile separation", 

Inorganic Chemistryvol. 56, pp. 4133-4140 (2017. 3). URL

[105]

Tomotada Hirohara, Takashi Kai, Joji Ohshita, and Yoshiro Kaneko*:

"Preparation of protic ionic liquids containing cyclic oligosiloxane frameworks", 

RSC Advances, vol. 7, pp. 10575-10582 (2017. 2). URL

   
 

~2016~

[104]

Akiyuki Harada, Sayako Koge, Joji Ohshita, and Yoshiro Kaneko*:

"Preparation of a thermally stable room temperature ionic liquid containing cage-like oligosilsesquioxane with two types of side-chain groups",

Bulletin of the Chemical Society of Japanvol. 89, pp. 1129-1135 (2016. 9). URL

This research was selected as "Selected Paper".

[103]

Akito Nagatomo and Yoshiro Kaneko*:

"Sol-gel preparation of amphiphilic silsesquioxane containing ether-chain and ammonium groups capable of forming reverse micelles",

Journal of Nanoscience and Nanotechnologyvol. 16, pp. 9238-9244 (2016. 9). URL

[102]

Hisako Sato*, Yoshiro Kaneko, Masatoshi Morita, Kenji Tamura, and Akihiko Yamagishi:

"Application of vermiculite clay for selective adsorption of cesium ions by high performance liquid chromatography",

Clay Science, vol. 20, pp. 7-11 (2016. 4).

[101]

Yoshiro Kaneko*, Hitomi Imamura, Takuo Sugioka, and Yasutaka Sumida:

"Preparation and thermal properties of soluble polysilsesquioxanes containing hydrophobic side-chain groups and their hybridization with organic polymers",

Polymervol. 92, pp. 250-255 (2016. 4). URL

   
  ~2015~
[100]

Takuya Kubo, Sayako Koge, Joji Ohshita, and Yoshiro Kaneko*:

"Preparation of imidazolium salt type ionic liquids containing cyclic siloxane frameworks",

Chemistry Letters, vol. 44, pp. 1362-1364 (2015. 7). URL

[99]

Shunya Miyauchi, Takuo Sugioka, Yasutaka Sumida, and Yoshiro Kaneko*:

"Preparation of soluble polysilsesquioxane containing phthalimido side-chain groups and its optical and thermal properties",

Polymervol. 66, pp. 122-126 (2015. 4). URL

[98]

Shota Kinoshita, Seiji Watase, Kimihiro Matsukawa, and Yoshiro Kaneko*:

"Selective synthesis of cis-trans-cis cyclic tetrasiloxanes and the formation of their two-dimensional layered aggregates", 

Journal of the American Chemical Societyvol. 137, pp. 5061-5065 (2015. 3). URL

[97]

Takahiro Tokunaga, Sayako Koge, Tomonobu Mizumo, Joji Ohshita, and Yoshiro Kaneko*:

"Facile preparation of a soluble polymer containing polyhedral oligomeric silsesquioxane units in its main chain", 

Polymer Chemistryvol. 6, pp. 3039-3045 (2015. 3). URL

[96]

Takuhiro Ishii, Toshiaki Enoki, Tomonobu Mizumo, Joji Ohshita, and Yoshiro Kaneko*:

"Preparation of imidazolium-type ionic liquids containing silsesquioxane frameworks and their thermal and ion-conductive properties", 

RSC Advancesvol. 5, pp. 15226-15232 (2015. 1). URL

   
  ~2014~
[95]

金子芳郎*:

“構造制御されたイオン性シルセスキオキサンの合成と機能化 (Preparation of ionic silsesquioxanes with controlled structures and their functionalizations)”, 

高分子論文集 (Kobunshi Ronbunshu), 特集号=ハイブリッド高分子, vol. 71, pp. 443-456 (2014. 10). (Japanese) URL

[94]

Yoshiro Kaneko*, Hisaya Toyodome, Tomonobu Mizumo, Kazuhiro Shikinaka, and Nobuo Iyi:

"Preparation of a sulfo-group-containing rod-like polysilsesquioxane with a hexagonally stacked structure and its proton conductivity",

Chemistry - A European Journal, vol. 20, pp. 9394-9399 (2014. 7). URL

This research was selected as Back Cover. gif file

[93]

Takahiro Tokunaga, Miki Shoiriki, Tomonobu Mizumo, and Yoshiro Kaneko*:

"Preparation of low-crystalline POSS containing two types of alkylammonium groups and its optically transparent film", 

Journal of Materials Chemistry C, vol. 2, pp. 2496-2501 (2014. 3). URL

[92]

Takuhiro Ishii, Tomonobu Mizumo, and Yoshiro Kaneko*:

"Facile preparation of ionic liquid containing silsesquioxane framework", 

Bulletin of the Chemical Society of Japan, vol. 87, pp. 155-159 (2014. 1). URL

   
  ~2013~
[91]

Tomoyuki Arake, Kazuhiro Shikinaka, Takuo Sugioka, Hironobu Hashimoto, Yasutaka Sumida, and Yoshiro Kaneko*:

"Dispersion of multi-walled carbon nanotube using soluble polysilsesquioxane containing alkylammonium side chains and triiodide counterions", 

Polymer, vol. 54, pp. 5643-5647 (2013. 10). URL

[90]

Hisaya Toyodome, Yuhei Higo, Ryo Sasai, Junichi Kurawaki, and Yoshiro Kaneko*:

"Behavior of chiral induction from polysilsesquioxanes bearing chiral and ammonium groups to anionic pyrene derivatives", 

Journal of Nanoscience and Nanotechnology, vol. 13, pp. 3074-3078 (2013. 4). URL

[89]

Nobuo Iyi*, Shinsuke Ishihara, Yoshiro Kaneko, and Hirohisa Yamada:

"Swelling and gel/sol formation of perchlorate-type layered double hydroxides in concentrated aqueous solutions of amino acid-related zwitterionic compounds", 

Langmuir, vol. 29, pp. 2562–2571 (2013. 2).

   
  ~2012~
[88]

Yoshiro Kaneko*Hisaya Toyodome, Miki Shoiriki, and Nobuo Iyi:

"Preparation of ionic silsesquioxanes with regular structures and their hybridization", 

International Journal of Polymer ScienceArticle ID 684278 (2012. 12). URL

[87]

Hisaya Toyodome, Yoshiro Kaneko*, Kazuhiro Shikinaka, and Nobuo Iyi:

"Preparation of carboxylate group-containing rod-like polysilsesquioxane with hexagonally stacked structure by sol–gel reaction of 2-cyanoethyltriethoxysilane", 

Polymer, vol. 53, pp. 6021–6026 (2012. 11). URL

[86]

Yoshiro Kaneko* and Tomoyuki Arake:

"Sol–gel preparation of highly water-dispersible silsesquioxane/zirconium oxide hybrid nanoparticles", 

International Journal of Polymer Science, Article ID 984501 (2012. 11). URL

[85]

Yoshiro Kaneko*, Miki Shoiriki, and Tomonobu Mizumo:

"Preparation of cage-like octa(3-aminopropyl)silsesquioxane trifluoromethanesulfonate in higher yield with a shorter reaction time", 

Journal of Materials Chemistry, vol. 22, pp. 14475–14478 (2012. 7). URL

   
  ~2011~
[84]

Shintaro Nomura, Tsuyoshi Kyutoku, Naoyuki Shimomura, Yoshiro Kaneko, and Jun-ichi Kadokawa*:

"Preparation of inclusion complexes composed of amylose and biodegradable poly(glycolic acid-co-ε-caprolactone) by vine-twining polymerization and their lipase-catalyzed hydrolysis behavior", 

Polymer Journal, vol. 43, pp. 971–977 (2011. 12).

[83]

Yoshiro Kaneko, Koji Ueno, Toshifumi Yui, Keisuke Nakahara, and Jun-ichi Kadokawa*:

"Amylose's recognition of chirality in polylactides on formation of inclusion complexes in vine-twining polymerization", 

Macromolecular Bioscience, vol. 11, pp. 1407–1415 (2011. 10).

[82]

Yoshiro Kaneko*, Hisaya Toyodome, and Hisako Sato:

"Preparation of chiral ladder-like polysilsesquioxanes and their chiral induction to anionic dye compound", 

Journal of Materials Chemistry, vol. 21, pp. 16638-16641 (2011. 10). URL

[81]

Yoshiro Kaneko*: 

“Preparation of highly water-dispersible titanium-silicon binary oxide materials by sol-gel method”, 

Journal of Nanoscience and Nanotechnology, vol. 11, pp. 2458-2464 (2011. 3). URL

[80]

Yoshiro Kaneko, Tsuyoshi Kyutoku, Naoyuki Shimomura, and Jun-ichi Kadokawa*:

"Formation of amylose-poly(tetrahydrofuran) inclusion complexes in ionic liquid media",

Chemistry Letters, vol. 40, pp. 31-33 (2011. 1).

   
  ~2010~
[79]

Manami Kanemaru, Shin-ya Kuwahara, Kazuya Yamamoto, Yoshiro Kaneko, and Jun-ichi Kadokawa*:

"Self-assembly of 6-O- and 6'-O-hexadecylsucroses mixture under aqueous condition", 

Carbohydrate Research, vol. 345, pp. 2718-2722 (2010. 12).

[78]

金子芳郎, 門川淳一*:

"アミロース生成重合場を利用した多糖超分子構築手法「つる巻き重合」 (Preparation method for polysaccharide supramolecules using amylose-forming polymerization field: vine-twining polymerization)", 

高分子論文集 (Kobunshi Ronbunshu), 特集号=生体超分子(1), vol. 67, pp. 553-559 (2010. 10). (Japanese)

[77]

Yoshiro Kaneko, Kazuya Fujisaki, Tsuyoshi Kyutoku, Hidemitsu Furukawa, and Jun-ichi Kadokawa*:

“Preparation of enzymatically recyclable hydrogel by means of formation of inclusion complex by amylose in vine-twining polymerization”, 

Chemistry - An Asian Journal, vol. 5, pp. 1627-1633 (2010. 7).

[76]

金子芳郎*, 井伊伸夫:

“規則構造を有する水溶性ポリシルセスキオキサンのゾル-ゲル合成 (Sol-gel synthesis of water-soluble polysilsesquioxanes with regular structures)”, 

高分子論文集 (Kobunshi Ronbunshu)特集号=無機高分子, vol. 67, pp. 280-287 (2010. 5). (Japanese) URL

[75]

Satoshi Kawazoe, Hironori Izawa, Mutsuki Nawaji, Yoshiro Kaneko, and Jun-ichi Kadokawa*:

“Phosphorylase-catalyzed N-formyl-α-glucosaminylation of maltooligosaccharides”, 

Carbohydrate Research, vol. 345, pp. 631-636 (2010. 3).

[74]

Kamalesh Prasad, Shozaburo Mine, Yoshiro Kaneko, and Jun-ichi Kadokawa*:

“Preparation of cellulose-based ionic porous material compatibilized with polymeric ionic liquid”, 

Polymer Bulletin, vol. 64, pp. 341-349 (2010. 3).

[73]

Yuji Omagari, Yoshiro Kaneko, and Jun-ichi Kadokawa*:

“Chemoenzymatic synthesis of amylose-grafted alginate and its formation of enzymatic disintegratable beads”, 

Carbohydrate Polymers, vol. 82, pp. 394-400 (2010. 2).

[72]

Yoshiro Kaneko, Shun-ichi Matsuda, and Jun-ichi Kadokawa*:

“Chemoenzymatic synthesis of amylose-grafted poly(vinyl alcohol)”, 

Polymer Chemistry, vol. 1, pp. 193-197 (2010. 2).

[71]

Shigeaki Yamazaki, Akihiko Takegawa, Yoshiro Kaneko, Jun-ichi Kadokawa, Masaki Yamagata, and Masashi Ishikawa*:

“High/low temperature operation of electric double layer capacitor utilizing acidic cellulose-chitin hybrid electrolyte”, 

Journal of Power Sources, vol. 195, pp. 6245-6249 (2010. 2).

[70]

Shigeaki Yamazaki, Akihiko Takegawa, Yoshiro Kaneko, Jun-ichi Kadokawa, Masaki Yamagata, and Masashi Ishikawa*: 

“Performance of electric double layer capacitor with acidic cellulose-chitin hybrid gel electrolyte”, 

Journal of the Electrochemical Society, vol. 157, pp. A203-A208 (2010. 1).

[69]

Akihiko Takegawa, Masa-aki Murakami, Yoshiro Kaneko, and Jun-ichi Kadokawa*:

“Preparation of chitin/cellulose composite gels and films with ionic liquids”, 

Carbohydrate Polymers, vol. 79, pp. 85-90 (2010. 1).

   
  ~2009~
[68]

Akihiko Takegawa, Masa-aki Murakami, Yoshiro Kaneko, and Jun-ichi Kadokawa*:

“A facile preparation of composites composed of cellulose and polymeric ionic liquids by in site polymerization of ionic liquids having acrylate groups”, 

Polymer Composites, vol. 30, pp. 1837-1841 (2009. 12).

[67]

Shozaburo Mine, Hironori Izawa, Yoshiro Kaneko, and Jun-ichi Kadokawa*:

“Acetylation of α-chitin in ionic liquid”, 

Carbohydrate Research, vol. 344, pp. 2263-2265 (2009. 11).

[66]

Hironori Izawa, Mutsuki Nawaji, Yoshiro Kaneko, and Jun-ichi Kadokawa*:

“Preparation of glycogen-based polysaccharide materials by phosphorylase-catalyzed chain-elongation of glycogen”, 

Macromolecular Bioscience, vol. 9, pp. 1098-1104 (2009. 11).

[65]

Jun-ichi Kadokawa*, Takehiro Nishikawa, Yousuke Sasaki, Yuhki Tanaka, Takeshi Kato, and Yoshiro Kaneko:

“Synthesis of aromatic polyamide having fluorescein moieties in the main-chain and its conversion into ionically cross-linked nanoparticles with Ca2+”, 

Polymer Journal, vol. 41, pp. 893-897 (2009. 10).

[64]

Kamalesh Prasad, Masa-aki Murakami, Yoshiro Kaneko, Akihiko Takada, Yoshifumi Nakamura, and Jun-ichi Kadokawa*:

“Weak gel of chitin with ionic liquid 1-allyl-3-methylimidazolium bromide”, 

International Journal of Biological Macromolecules, vol. 45, pp. 221-225 (2009. 10).

[63]

Hironori Izawa, Yoshiro Kaneko, and Jun-ichi Kadokawa*:

“Unique gel of xanthan gum with ionic liquid and its conversion into high performance hydrogel”, 

Journal of Materials Chemistry, vol. 19, pp. 6969-6972 (2009. 9).

[62]

Yoshiro Kaneko, Koutarou Beppu, and Jun-ichi Kadokawa*:

“Amylose selectively includes a specific range of molecular weights in poly(tetrahydrofuran)s in vine-twining polymerization”, 

Polymer Journal, vol. 41, pp. 792-796 (2009. 9).

[61]

Yoshiro Kaneko* and Nobuo Iyi:

“Sol–gel synthesis of ladder polysilsesquioxanes forming chiral conformations and hexagonal stacking structures”, 

Journal of Materials Chemistry, vol. 19, pp. 7106-7111 (2009. 8). URL

[60]

Takehiro Nishikawa*, Norio Iwakiri, Yoshiro Kaneko, Akihiko Taguchi, Kazuhito Fukushima, Hidezo Mori, Nobuhiro Morone, and Jun-ichi Kadokawa:

“Nitric oxide release in human aortic endothelial cells mediated by delivery of amphiphilic polysiloxane nanoparticles to caveolae”, 

Biomacromolecules, vol. 10, pp. 2074-2085 (2009. 8).

[59]

Kamalesh Prasad, Hironori Izawa, Yoshiro Kaneko, and Jun-ichi Kadokawa*:

“Preparation of temperature-induced shapeable film material from guar gum-based gel with an ionic liquid”, 

Journal of Materials Chemistry, vol. 19, pp. 4088-4090 (2009. 5).

[58]

Norio Iwakiri, Takehiro Nishikawa, Yoshiro Kaneko, and Jun-ichi Kadokawa*:

“Synthesis of amphiphilic polysiloxanes and their properties for formation of nano-aggregates”, 

Colloid and Polymer Science, vol. 287, pp. 577-582 (2009. 5).

[57]

Yuji Omagari, Shun-ichi Matsuda, Yoshiro Kaneko, and Jun-ichi Kadokawa*:

“Chemoenzymatic synthesis of amylose-grafted cellulose”, 

Macromolecular Bioscience, vol. 9, pp. 450-455 (2009. 5).

[56]

Hironori Izawa, Yoshiro Kaneko, and Jun-ichi Kadokawa*:

“Apparent production of enzymatically synthesized amylose in DMSO by means of calcium alginate hydrogel beads/DMSO system”, 

Journal of Carbohydrate Chemistry, vol. 28, pp. 179-190 (2009. 4).

[55]

Kamalesh Prasad, Yoshiro Kaneko, and Jun-ichi Kadokawa*:

“Novel gelling system of k-, i-, and l-carrageenans and their composite gels with cellulose using ionic liquid”, 

Macromolecular Bioscience, vol. 9, pp. 376-382 (2009. 4).

[54]

Yoshiro Kaneko, Koutarou Beppu, Tsuyoshi Kyutoku, and Jun-ichi Kadokawa*:

“Selectivity and priority on inclusion of amylose toward guest polyethers and polyesters in vine-twining polymerization”, 

Polymer Journal, vol. 41, pp. 279-286 (2009. 4).

[53]

Yousuke Sasaki, Yoshiro Kaneko, and Jun-ichi Kadokawa*:

“Chemoenzymatic synthesis of amylose-grafted polyacetylene by polymer reaction manner and its conversion into organogel with DMSO by cross-linking”, 

Polymer Bulletin, vol. 62, pp. 291-303 (2009. 3).

[52]

Jun-ichi Kadokawa*, Masa-aki Murakami, Akihiko Takegawa, and Yoshiro Kaneko:

“Preparation of cellulose–starch composite gel and fibrous material from a mixture of the polysaccharides in ionic liquid”, 

Carbohydrate Polymers, vol. 75, pp. 180-183 (2009. 1).

[51]

Shigeaki Yamazaki, Akihiko Takegawa, Yoshiro Kaneko, Jun-ichi Kadokawa, Masaaki Yamagata, and Masashi Ishikawa*:

“An acidic cellulose-chitin hybrid gel as novel electrolyte for an electric double layer capacitor”, 

Electrochemistry Communications, vol. 11, pp. 68-70 (2009. 1).

   
  ~2008~
[50]

Jun-ichi Kadokawa*, Masakazu Suenaga, and Yoshiro Kaneko:

“Intramolecular fluorescence resonance energy-transfer of fluorescein derivative; phenyl and styryl p-disubstituted fluorescein”, 

Chemistry Letters, vol. 37, pp. 1232-1233 (2008. 12).

[49]

Mutsuki Nawaji, Hironori Izawa, Yoshiro Kaneko, and Jun-ichi Kadokawa*:

“Enzymatic α-glucosaminylation of maltooligosaccharides catalyzed by phosphorylase”, 

Carbohydrate Research, vol. 343, pp. 2692-2696 (2008. 10).

[48]

Yoshiro Kaneko, Yoshihiro Saito, Atsushi Nakaya, Jun-ichi Kadokawa*, and Hideyuki Tagaya:

“Preparation of inclusion complexes composed of amylose and strongly hydrophobic polyesters in parallel enzymatic polymerization system”, 

Macromolecules, vol. 41, pp. 5665-5670 (2008. 8).

[47]

Yoshiro Kaneko, Koutarou Beppu, and Jun-ichi Kadokawa*:

“Preparation of amylose/polycarbonate inclusion complexes by means of vine-twining polymerization”, 

Macromolecular Chemistry and Physics, vol. 209, pp. 1037-1042 (2008. 5).

[46]

Mutsuki Nawaji, Hironori Izawa, Yoshiro Kaneko, and Jun-ichi Kadokawa*:

“Enzymatic synthesis of α-D-xylosylated maltooligosaccharides by phosphorylase-catalyzed xylosylation”, 

Journal of Carbohydrate Chemistry, vol. 27, pp. 214-222 (2008. 4).

[45]

Jun-ichi Kadokawa*, Daisuke Shinohara, Akihiko Takegawa, Masa-aki Murakami, Yoshiro Kaneko, and Tomoaki Matsuo:

“Preparation of tannin gel by enzyme-mimetic reaction of condensed tannin without use of crosslinking agent”, 

Colloid and Polymer Science, vol. 286, pp. 481-485 (2008. 4).

[44]

Jun-ichi Kadokawa*, Masa-aki Murakami, and Yoshiro Kaneko:

“A facile preparation of gel materials from a solution of cellulose in ionic liquid”, 

Carbohydrate Research, vol. 343, pp. 769-772 (2008. 3).

[43]

Jun-ichi Kadokawa*, Yoshifumi Nakamura, Yousuke Sasaki, Yoshiro Kaneko, and Takehiro Nishikawa:

“Chemoenzymatic synthesis of amylose-grafted polyacetylenes”, 

Polymer Bulletin, vol. 60, pp. 57-68 (2008. 2).

[42]

Jun-ichi Kadokawa*, Masa-aki Murakami, and Yoshiro Kaneko:

“A facile method for preparation of composites composed of cellulose and a polystyrene-type polymeric ionic liquid using a polymerizable ionic liquid”, 

Composites Science and Technology, vol. 68, pp. 493-498 (2008. 2).

[41]

Jun-ichi Kadokawa*, Masakazu Suenaga, and Yoshiro Kaneko:

“Synthesis of poly(p-phenylene) having phthalic anhydride moieties in the main-chain and its conversion into fluorescein derivative”, 

Macromolecules, vol. 41, pp. 3750-3754 (2008. 1).

[40]

Yoshiro Kaneko, Norio Iwakiri, Shinsuke Sato, and Jun-ichi Kadokawa*:

“Stereospecific free-radical polymerization of methacrylic acid calcium salt for facile preparation of isotactic-rich polymers”, 

Macromolecules, vol. 41, pp. 489-492 (2008. 1).

   
  ~2007~
[39]

Yoshiro Kaneko, Shun-ichi Matsuda, and Jun-ichi Kadokawa*:

“Chemoenzymatic syntheses of amylose-grafted chitin and chitosan”, 

Biomacromolecules, vol. 8, pp. 3959-3964 (2007. 12).

[38]

Yoshiro Kaneko* and Nobuo Iyi:

“Sol-gel synthesis of rodlike polysilsesquioxanes forming regular higher-ordered nanostructure”, 

Zeitschrift für Kristallographie, vol. 222, pp. 656-662 (2007. 11). URL

[37]

Yoshiro Kaneko, Koutarou Beppu, and Jun-ichi Kadokawa*:

“Amylose selectively includes one from a mixture of two resemblant polyethers in vine-twining polymerization”, 

Biomacromolecules, vol. 8, pp. 2983-2985 (2007. 10).

[36]

Yoshiro Kaneko, Katsuhiro Noguchi, and Jun-ichi Kadokawa*:

“Synthesis of temperature-responsive organic-inorganic hybrid hydrogel by free-radical polymerization of methacrylamide using water-soluble rigid polysiloxane having acryamido side-chains as a cross-linking agent”, 

Polymer Journal, vol. 39, pp. 1078-1081 (2007. 10). URL

[35]

Koutarou Beppu, Yoshiro Kaneko, Jun-ichi Kadokawa*, Hidezo Mori, and Takehiro Nishikawa:

“Synthesis of sugar-polysiloxane hybrids having rigid main-chains and formation of their nano aggregates”, 

Polymer Journal, vol. 39, pp. 1065-1070 (2007. 10).

[34]

Yoritake Yamashita, Yoshiro Kaneko, and Jun-ichi Kadokawa*:

“Synthesis of poly(p-phenylene)s having alternating sugar and alkyl substituents by Suzuki coupling polymerization and evaluation of their main-chain conformations”, 

European Polymer Journal, vol. 43, pp. 3795-3806 (2007. 9).

[33]

Shun-ichi Matsuda, Yoshiro Kaneko, and Jun-ichi Kadokawa*:

“Chemoenzymatic synthesis of amylose-grafted chitosan”, 

Macromolecular Rapid Communications, vol. 28, pp. 863-867 (2007. 4).

[32]

Yoritake Yamashita, Yoshiro Kaneko, and Jun-ichi Kadokawa*:

“Synthesis of glucose-substituted poly(p-phenylene)s with twisted main-chain in one direction due to induced axial chirality”, 

Polymer Bulletin, vol. 58, pp. 635-643 (2007. 4).

[31]

Taki Matsumoto*, Nobuo Iyi, Yoshiro Kaneko, Kenji Kitamura, Shumei Ishihara, Yoshio Takasu, and Yasushi Murakami:

“High visible-light photocatalytic activity of nitrogen-doped titania prepared from layered titania/isostearate nanocomposite”, 

Catalysis Today, vol. 120, pp. 226-232 (2007. 2).

[30]

Masa-aki Murakami, Yoshiro Kaneko, and Jun-ichi Kadokawa*:

“Preparation of cellulose-polymerized ionic liquid composite by in-situ polymerization of polymerizable ionic liquid in cellulose-dissolving solution”, 

Carbohydrate Polymers, vol. 69, pp. 378-381 (2007. 1).

   
  ~2006~
[29]

Masakazu Suenaga, Yoshiro Kaneko, Jun-ichi Kadokawa*, Takehiro Nishikawa, Hidezo Mori, and Masayoshi Tabata:

“Amphiphilic poly(N-propargylamide) with galactose and lauryloyl groups: synthesis and properties”, 

Macromolecular Bioscience, vol. 6, pp. 1009-1018 (2006. 12).

[28]

Yoshiro Kaneko and Jun-ichi Kadokawa*:

“Synthesis of nanostructured bio-related materials by hybridization of synthetic polymers with polysaccharides or saccharide residues”, 

Journal of Biomaterials Science, Polymer Edition, vol. 17, pp. 1269-1284 (2006. 11).

[27]

Jun-ichi Kadokawa*, Koichi Tawa, Masakazu Suenaga, Yoshiro Kaneko, and Masayoshi Tabata:

“Polymerization and copolymerization of a new N-propargylamide monomer having a pendant galactose residue to produce sugar-carrying poly(N-propargylamdie)s”, 

Journal of Macromolecular Science Part A, Pure and Applied Chemistry, vol. 43, pp. 1179-1187 (2006. 8).

[26]

Yoshiro Kaneko, Shinsuke Sato, Jun-ichi Kadokawa*, and Nobuo Iyi:

“Synthesis of organic-inorganic hybrid hydrogels using rodlike polysiloxane having acrylamido groups as a new cross-linking agent”, 

Journal of Materials Chemistry, vol. 16, pp. 1746-1750 (2006. 3). URL

   
  ~2005~
[25]

Yoshiro Kaneko, Jun-ichi Kadokawa*, Mutsumi Setoguchi, and Nobuo Iyi:

“Synthesis of rodlike polysiloxane containing polyol moieties derived from glucose with regularly controlled higher-ordered structure”, 

Polymer, vol. 46, pp. 8905-8907 (2005. 10). URL

[24]

Bungo Ochiai, Jun-ichi Nakayama, Masayuki Mashiko, Yoshiro Kaneko, Tomomi Nagasawa, and Takeshi Endo*:

“Synthesis and crosslinking reaction of poly(hydroxyurethane) bearing secondary amine structure in the main chain”, 

Journal of Polymer Science Part A, Polymer Chemistry, vol. 43, pp. 5899-5905 (2005. 9).

[23]

Yoshiro Kaneko*, Nobuo Iyi, Taki Matsumoto, and Hisanao Usami:

“Synthesis of water-soluble silicon oxide material by sol-gel reaction in tetraalkoxysilane-aminoalkyltrialkoxysilane binary system”, 

Journal of Materials Research, vol. 20, pp. 2199-2204 (2005. 8). URL

[22]

Nobuo Iyi*, Kentaro Okamoto, Yoshiro Kaneko, and Taki Matsumoto:

“Effects of anion species on deintercalation of carbonate ions from hydrotalcite-like compounds”, 

Chemistry Letters, vol. 34, pp. 932-933 (2005. 7).

[21]

Taki Matsumoto*, Nobuo Iyi, Yoshiro Kaneko, Kenji Kitamura, Satoru Masaki, Tomohito Imai, Wataru Sugimoto, Yoshio Takasu, and Yasushi Murakami:

“Preparation of a transparent and flexible self-standing film of layered titania/isostearate nanocomposite”, 

Journal of Materials Research, vol. 20, pp. 1308-1315 (2005. 5).

[20]

Yoshiro Kaneko*, Nobuo Iyi, Taki Matsumoto, and Kenji Kitamura:

“Preparation of higher-ordered inorganic-organic nanocomposite composed of rodlike cationic polysiloxane and polyacrylate”, 

Journal of Materials Chemistry, vol. 15, pp. 1572-1575 (2005. 2). URL

[19]

Yoshiro Kaneko*, Nobuo Iyi, Taki Matsumoto, and Kenji Kitamura:

“Synthesis of rodlike polysiloxane with hexagonal phase by sol-gel reaction of organotrialkoxysilane monomer containing two amino groups”, 

Polymer, vol. 46, pp. 1828-1833 (2005. 2). URL

[18]

Yoshiro Kaneko and Jun-ichi Kadokawa*:

“Vine-twining polymerization: a new preparation method for well-defined supramolecules composed of amylose and synthetic polymers”, 

Chemical Record, vol. 5, pp. 36-46 (2005. 1).

   
  ~2004~
[17]

Yoshiro Kaneko*, Nobuo Iyi, Taki Matsumoto, and Kenji Kitamura:

“Preparation of a clay pillared with rodlike cationic polysiloxane”, 

Chemistry Letters, vol. 33, pp. 1486-1487 (2004. 11). URL

[16]

Taki Matsumoto*, Nobuo Iyi, Yoshiro Kaneko, Kenji Kitamura, Yoshio Takasu, and Yasushi Murakami:

“Preparation of nitrogen-doped anatase titania by treatment of layered titania/isostearate nanocomposite with aqueous ammonia”, 

Chemistry Letters, vol. 33, pp. 1508-1509 (2004. 11).

[15]

Nobuo Iyi*, Taki Matsumoto, Yoshiro Kaneko, and Kenji Kitamura:

“A novel synthetic route to layered double hydroxides using hexamethylenetetramine”, 

Chemistry Letters, vol. 33, pp. 1122-1123 (2004. 9).

[14]

Yoshiro Kaneko*, Nobuo Iyi, Keiji Kurashima, Taki Matsumoto, Taketoshi Fujita, and Kenji Kitamura:

“Hexagonal-structured polysiloxane material prepared by sol-gel reaction of aminoalkyltrialkoxysilane without using surfactants”, 

Chemistry of Materials, vol. 16, pp. 3417-3423 (2004. 9). URL

[13]

Nobuo Iyi*, Yoshiro Kaneko, Taketoshi Fujita, Anita S. Nagamani, and Channabasaveshwar V. Yelamaggad:

“Thermal behavior of a cationic mesogen intercalated into clay interlayer”, 

Molecular Crystals and Liquid Crystals, vol. 414, pp. 49-61 (2004. 7).

[12]

Nobuo Iyi*, Taki Matsumoto, Yoshiro Kaneko, and Kenji Kitamura:

“Deintercalation of carbonate ions from a hydrotalcite-like compound: enhanced decarbonation using acid-salt mixed solution”, 

Chemistry of Materials, vol. 16, pp. 2926-2932 (2004. 7).

[11]

Yoshiro Kaneko, Nobuo Iyi*, Juraj Bujdak, Ryo Sasai, and Taketoshi Fujita:

“Effect of layer charge density on orientation and aggregation of a cationic laser dye incorporated in the interlayer space of montmorillonites”, 

Journal of Colloid and Interface Science, vol. 269, pp. 22-25 (2004. 1).

   
  ~2003~
[10]

Juraj Bujdak*, Nobuo Iyi, Yoshiro Kaneko, and Ryo Sasai:

“Molecular orientation of methylene blue cations adsorbed on clay surfaces”, 

Clay Minerals, vol. 38, pp. 561-572 (2003. 12).

[9]

Taketoshi Fujita*, Nobuo Iyi, Zenon Klapyta, Kazuko Fujii, Yoshiro Kaneko, and Kenji Kitamura:

“Photomechanical response of azobenzene/organophilic mica complexes”, 

Materials Research Bulletin, vol. 38, pp. 2009-2017 (2003. 12).

[8]

Yoshiro Kaneko, Nobuo Iyi*, Juraj Bujdak, Ryo Sasai, and Taketoshi Fujita:

“Molecular orientation of methylene blue intercalated in layer-charge-controlled montmorillonites”, 

Journal of Materials Research, vol. 18, pp. 2639-2643 (2003. 11).

[7]

Juraj Bujdak*, Nobuo Iyi, Yoshiro Kaneko, Adriana Czimerova, and Ryo Sasai:

“Molecular arrangement of rhodamine 6G cations in the films of layered silicates: the effect of layer charge”, 

Physical Chemistry Chemical Physics, vol. 5, pp. 4680-4685 (2003. 9).

[6]

Yoshiro Kaneko*, Nobuo Iyi, Taki Matsumoto, Kazuko Fujii, Keiji Kurashima, and Taketoshi Fujita:

“Synthesis of ion-exchangeable layered polysiloxane by sol-gel reaction of aminoalkyltrialkoxysilane: a new preparation method for layered polysiloxane materials”, 

Journal of Materials Chemistry, vol. 13, pp. 2058-2060 (2003. 7). URL

[5]

Jun-ichi Kadokawa*, Atsushi Nakaya, Yoshiro Kaneko, and Hideyuki Tagaya:

“Preparation of inclusion complexes between amylose and ester-containing polymers by means of vine-twining polymerization”, 

Macromolecular Chemistry and Physics, vol. 204, pp. 1451-1457 (2003. 7).

   
  ~2002~
[4]

Jun-ichi Kadokawa*, Yoshiro Kaneko, Shin-ichi Nagase, Tomohide Takahashi, and Hideyuki Tagaya:

“Vine-twining polymerization: amylose twines around polyethers to form amylose-polyether inclusion complexes”, 

Chemistry - A European Journal, vol. 8, pp. 3322-3326 (2002. 8).

   
  ~2001~
[3]

Jun-ichi Kadokawa*, Yoshiro Kaneko, Atsushi Nakaya, and Hideyuki Tagaya:

“Formation of an amylose-polyester inclusion complex by means of phosphorylase-catalyzed enzymatic polymerization of α-D-glucose 1-phosphate monomer in the presence of poly(ε-caprolactone)”, 

Macromolecules, vol. 34, pp. 6536-6538 (2001. 9).

[2]

Jun-ichi Kadokawa*, Yoshiro Kaneko, Hideyuki Tagaya, and Koji Chiba:

“Synthesis of an amylose-polymer inclusion complex by enzymatic polymerization of glucose 1-phosphate catalyzed by phosphorylase enzyme in the presence of polyTHF: a new method for synthesis of polymer-polymer inclusion complexes”, 

Chemical Communications, pp. 449-450 (2001. 2).

   
  ~2000~
[1]

Jun-ichi Kadokawa*, Yoshiro Kaneko, Shigeo Yamada, Kyosuke Ikuma, Hideyuki Tagaya, and Koji Chiba:

“Synthesis of hyperbranched polymers via proton-transfer polymerization of acrylate monomer containing two hydroxy groups”, 

Macromolecular Rapid Communications, vol. 21, pp. 362-368 (2000. 5).

 

Last updated on July 8, 2024