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.
Papers
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Crystallization behaviors of poly[(R)-3-hydroxybutyrate-co-4-hydroxybutyrate]/poly(ethylene glycol) graft TEMPO-oxidized cellulose nanofiber blends
TL;DR: In this paper, a microbial and biodegradable polyester, poly(ethylene glycol) graft TEMPO-oxidized cellulose nanofiber (PEG-TOCN) was blended as a nucleating agent.
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Trilayer-cubic core–shell structure of PbS/EuS nanocrystals revealed by the combination of the synchrotron small-angle X-ray scattering method and energy-dispersive X-ray spectroscopy
Hiroyasu Masunaga,Hiroki Ogawa,Takuya Nakashima,Tsuyoshi Kawai,Takaaki Hikima,Masaki Takata,Sono Sasaki +6 more
TL;DR: By simulating the intensity of SAXS using multilayer-cubic models with various core-shell electron density distributions, it was found that the particle structure was explained approximately as a trilayers-cUBic model having the PbS core and the EuS/Eu2O3 shell.
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Measuring the shock stage of Itokawa and asteroid regolith grains by electron backscattered diffraction, optical petrography, and synchrotron X‐ray diffraction
Michael J. Zvolensky,James Martinez,Scott D. Sitzman,Takashi Mikouchi,Kenji Hagiya,Kazumasa Ohsumi,Mutsumi Komatsu,Tomoki Nakamura,A. Takenouchi,H. Ono,Hikari Hasegawa,Kotaro Higashi,Yasuko Terada,Naoto Yagi,Masaki Takata,H. Ozawa,Y Taki,Yuta Yamatsuta,Arashi Hirata,Ayaka Kurokawa,Shoki Yamaguchi +20 more
TL;DR: In this paper , the optimal conditions under which to measure the shock stage of olivine crystals in astromaterial grains by EBSD were determined for asteroid Itokawa regolith from the Hayabusa spacecraft.
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Structural Features of Ge1Sb4Te7, an Intermetallic Compound in the GeTe—Sb2Te3 Homologous Series.
TL;DR: In this paper, the structural and bonding properties of Ge1Sb4Te7 were investigated using an X-ray diffraction method and calculations based on density functional theory (DFT).
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Experimental Observation of Valence electron Density by Maximum Entropy Method
TL;DR: In this paper, a simple scheme is introduced which extracts the valence electron density from X-ray diffraction data by employing the maximum entropy method, and reveals in detail the bonding nature.