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Dive into the research topics where Masaru Utsunomiya is active.

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Featured researches published by Masaru Utsunomiya.


Chemsuschem | 2016

Efficient Decarbonylation of Furfural to Furan Catalyzed by Zirconia‐Supported Palladium Clusters with Low Atomicity

Tamao Ishida; Kurumi Kume; Kota Kinjo; Tetsuo Honma; Kengo Nakada; Hironori Ohashi; Takushi Yokoyama; Akiyuki Hamasaki; Haruno Murayama; Yusuke Izawa; Masaru Utsunomiya; Makoto Tokunaga

Decarbonylation of furfural to furan was efficiently catalyzed by ZrO2 -supported Pd clusters in the liquid phase under a N2 atmosphere without additives. Although Pd/C and Pd/Al2 O3 have frequently been used for decarbonylation, Pd/ZrO2 exhibited superior catalytic performance compared with these conventional catalysts. Transmission electron microscopy and X-ray absorption fine structure measurements revealed that the size of the Pd particles decreased with an increase in the specific surface area of ZrO2 . ZrO2 with a high surface area immobilized Pd as clusters consisting of several (three to five) Pd atoms, whereas Pd aggregated to form nanoparticles on other supports such as carbon and Al2 O3 despite their high surface areas. The catalytic activity of Pd/ZrO2 was enhanced with a decrease in particle size, and the smallest Pd/ZrO2 was the most active catalyst for decarbonylation. When CeO2 was used as the support, a decrease in Pd particle size with an increase in surface area was also observed. Single Pd atoms were deposited on CeO2 with a high surface area, with a strong interaction through the formation of a Pd-O-Ce bond, which led to a lower catalytic activity than that of Pd/ZrO2 . This result suggests that zero-valent small Pd clusters consisting of more than one Pd atom are the active species for the decarbonylation reaction. Recycling tests proved that Pd/ZrO2 maintained its catalytic activity until its sixth use.


Organometallics | 2005

Dramatic Rate Acceleration by a Diphenyl-2-pyridylphosphine Ligand in the Hydration of Nitriles Catalyzed by Ru-(acac)~2 Complexes

Toshiyuki Oshiki; Hitoshi Yamashita; Kensuke Sawada; Masaru Utsunomiya; Kazunari Takahashi; Kazuhiko Takai


Archive | 2010

PRODUCTION PROCESS OF CONJUGATED DIENE

Souichi Orita; Hiroshi Takeo; Masaru Utsunomiya; Takuma Nishio; Hiroyuki Yagi; Nariyasu Kanuka


Archive | 2008

Method of producing alcohol

Yoshiyuki Tanaka; Masaru Utsunomiya


Archive | 2008

PROCESS OF PRODUCING ALCOHOL

Yoshiyuki Tanaka; Masaru Utsunomiya


Archive | 2013

Production method for 1, 4-butanediol

Masaru Utsunomiya; Yusuke Izawa; Norikazu Konishi; Kota Tanaka; Shinichiro Matsuzono; Takayuki Suzuki; Michael Japs; Mark Burk; Warren Clark


Advanced Synthesis & Catalysis | 2011

Irreversible catalytic ester hydrolysis of allyl esters to give acids and aldehydes by homogeneous ruthenium and ruthenium/palladium dual catalyst systems

Asami Nakamura; Akiyuki Hamasaki; Sachihiko Goto; Masaru Utsunomiya; Makoto Tokunaga


Archive | 1986

Method for producing polybutylene terephthalate

Masaru Utsunomiya; Yusuke Izawa; Norikazu Konishi; Shinichiro Matsuzono; Takayuki Suzuki; Michael Japs; Mark Burk; Warren Clark


Archive | 2004

NEW RUTHENIUM COMPLEX, METHOD FOR PRODUCING THE SAME AND METHOD FOR PRODUCING AMIDE COMPOUND USING THE SAME

Toshiyuki Oshiki; Kazunari Takahashi; Kazuhiko Takai; Masaru Utsunomiya; 賢 宇都宮; 俊之 押木; 和彦 高井; 和成 高橋


Archive | 2001

Method for producing carbonyl compound by dehydrogenating alcohol

Masaru Utsunomiya; Kazunari Takahashi; Yoko Seto; Souichi Orita; Souichi Amano

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Norikazu Konishi

Mitsubishi Chemical Corporation

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Kazunari Takahashi

Mitsubishi Chemical Corporation

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Shinichiro Matsuzono

Mitsubishi Chemical Corporation

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Warren Clark

Mitsubishi Chemical Corporation

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Michael Japs

Mitsubishi Chemical Corporation

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Kota Tanaka

Mitsubishi Chemical Corporation

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Souichi Orita

Mitsubishi Chemical Corporation

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Yoko Seto

Mitsubishi Chemical Corporation

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