M
Masaki Takata
Researcher at Tohoku University
Publications - 598
Citations - 31366
Masaki Takata is an academic researcher from Tohoku University. The author has contributed to research in topics: Powder diffraction & Charge density. The author has an hindex of 90, co-authored 594 publications receiving 28478 citations. Previous affiliations of Masaki Takata include Shimane University & National Institute for Materials Science.
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Crystalline coordination framework endowed with dynamic gate-opening behaviour by being downsized to a thin film
Shun Sakaida,Kazuya Otsubo,Osami Sakata,Chulho Song,Akihiko Fujiwara,Masaki Takata,Hiroshi Kitagawa +6 more
TL;DR: A coordination framework is reported that exhibits a dynamic guest-sorption behaviour in a nanometre-sized thin-film form (16 nm thick), yet shows no guest uptake in the bulk, and it is envisaged that such a crystal-downsizing effect may be observed with other coordination frameworks.
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Control of interpenetration for tuning structural flexibility influences sorption properties.
Sareeya Bureekaew,Hiroshi Sato,Ryotaro Matsuda,Yoshiki Kubota,Raita Hirose,Jungeun Kim,Kenichi Kato,Masaki Takata,Susumu Kitagawa +8 more
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Protein encapsulation within synthetic molecular hosts
Daishi Fujita,Kosuke Suzuki,Sota Sato,Maho Yagi-Utsumi,Maho Yagi-Utsumi,Yoshiki Yamaguchi,Nobuhiro Mizuno,Takashi Kumasaka,Masaki Takata,Masanori Noda,Susumu Uchiyama,Koichi Kato,Koichi Kato,Makoto Fujita +13 more
TL;DR: The encapsulation of a small protein, ubiquitin, within giant coordination cages self-assembled around the protein-encapsulated structure could be analysed by NMR spectroscopy, ultracentrifugation and X-ray crystallography.
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High CO2/N2/O2/CO separation in a chemically robust porous coordination polymer with low binding energy
Jingui Duan,Masakazu Higuchi,Rajamani Krishna,Tomokazu Kiyonaga,Yosuke Tsutsumi,Yohei Sato,Yoshiki Kubota,Masaki Takata,Susumu Kitagawa +8 more
TL;DR: In this article, a new PCP called [La(BTN)DMF]·guest (PCP-1⊃guest), which has a large aromatic organic surface and a low binding energy for high CO2 separation from four-gas mixtures (CO2-N2-O2-CO) at ambient temperature, was proposed.
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Thermal expansion of single-walled carbon nanotube (SWNT) bundles: X-ray diffraction studies
Yutaka Maniwa,Ryuji Fujiwara,Hiroshi Kira,Hideki Tou,Hiromichi Kataura,Shinzo Suzuki,Yohji Achiba,Eiji Nishibori,Masaki Takata,Makoto Sakata,Akihiko Fujiwara,Hiroyoshi Suematsu +11 more
TL;DR: In this article, the thermal expansion coefficient in single-walled carbon nanotube bundles was determined as $(\ensuremath{-}0.15\ifmmode\pm\else\textpm\fi{} 0.20)\ifmmodes\times\else \texttimes\fa{}{10}^{--}5} (1/\mathrm{K})$ for the tube diameter.