S
Shohei Saito
Researcher at Kyoto University
Publications - 106
Citations - 5965
Shohei Saito is an academic researcher from Kyoto University. The author has contributed to research in topics: Aromaticity & Möbius aromaticity. The author has an hindex of 39, co-authored 98 publications receiving 5033 citations. Previous affiliations of Shohei Saito include Waseda University & Kangwon National University.
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Journal ArticleDOI
Expanded Porphyrins: Intriguing Structures, Electronic Properties, and Reactivities
Shohei Saito,Atsuhiro Osuka +1 more
TL;DR: In this Review, the recent progress of the chemistry of expanded porphyrins after the seminal Review by Sessler and Seidel in 2003 is presented.
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Distinct Responses to Mechanical Grinding and Hydrostatic Pressure in Luminescent Chromism of Tetrathiazolylthiophene
Kazuhiko Nagura,Shohei Saito,Hitoshi Yusa,Hiroshi Yamawaki,Hiroshi Fujihisa,Hiroyasu Sato,Yuichi Shimoikeda,Shigehiro Yamaguchi +7 more
TL;DR: The distinct luminescent responses of a new organic fluorophore, tetrathiazolylthiophene, to these stresses are reported, which include a high-pressure single-crystal X-ray diffraction analysis and the different mechanisms of a blue shift by grinding crystals and of a red shift under hydrostatic pressure.
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Atomically controlled substitutional boron-doping of graphene nanoribbons
Shigeki Kawai,Shohei Saito,Shinichiro Osumi,Shigehiro Yamaguchi,Adam S. Foster,Peter Spijker,Ernst Meyer +6 more
TL;DR: Structural properties and the chemical nature of the NO-reacted B-GNR are determined by a combination of scanning tunnelling microscopy, high-resolution atomic force microscopy with a CO tip, and density functional and classical computations.
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Metalation of expanded porphyrins: a chemical trigger used to produce molecular twisting and Möbius aromaticity.
Yasuo Tanaka,Shohei Saito,Shigeki Mori,Naoki Aratani,Hiroshi Shinokubo,Naoki Shibata,Yoshiki Higuchi,Zin Seok Yoon,Kil Suk Kim,Su Bum Noh,Jong Kang Park,Dongho Kim,Atsuhiro Osuka +12 more
Journal ArticleDOI
Expanded porphyrins and aromaticity
Atsuhiro Osuka,Shohei Saito +1 more
TL;DR: meso-Aryl-substituted expanded porphyrin homologues consisting of more than five pyrrolic units are a nice platform to realize diverse aromatic and antiaromatic species as well as stable radical species.