T
Toshiharu Teranishi
Researcher at Kyoto University
Publications - 329
Citations - 14413
Toshiharu Teranishi is an academic researcher from Kyoto University. The author has contributed to research in topics: Nanoparticle & Catalysis. The author has an hindex of 57, co-authored 301 publications receiving 12954 citations. Previous affiliations of Toshiharu Teranishi include University of Tsukuba & Applied Science Private University.
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Investigation on the polymer particle growth in ethylene polymerization with PS beads supported rac-Ph2Si(Ind)2ZrCl2 catalyst
TL;DR: In this paper, the mechanism of polyethylene particle growth was investigated using poly(styrene-co-divinylbenzene) (PS beads) supported rac-Ph2Si(Ind)2ZrCl2 catalyst.
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Clear and transparent nanocrystals for infrared-responsive carrier transfer
Masanori Sakamoto,Tokuhisa Kawawaki,Masato Kimura,Taizo Yoshinaga,Junie Jhon M. Vequizo,Hironori Matsunaga,Chandana Sampath Kumara Ranasinghe,Akira Yamakata,Hiroyuki Matsuzaki,Akihiro Furube,Toshiharu Teranishi +10 more
TL;DR: The authors fabricate a clear and colourless material which converts infrared light to an electrical signal or energy based on a localized surface plasmon resonance, with implications for the development of invisible optical devices.
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Hard X-ray-induced optical luminescence via biomolecule-directed metal clusters
Yasuko Osakada,Yasuko Osakada,Yasuko Osakada,Guillem Pratx,Conroy Sun,Masanori Sakamoto,Masanori Sakamoto,Moiz Ahmad,O Volotskova,Qunxiang Ong,Toshiharu Teranishi,Yoshie Harada,Lei Xing,Bianxiao Cui +13 more
TL;DR: It is demonstrated that biomolecule-directed metal clusters are applicable in the study of hard X-rays excited optical luminescence, promising a new direction in the development of novel X-ray-activated imaging probes.
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Quantized Auger recombination of biexcitons in CdSe nanorods studied by time-resolved photoluminescence and transient-absorption spectroscopy
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Direct Observation of Multiphoton Emission Enhancement from a Single Quantum Dot Using AFM Manipulation of a Cubic Gold Nanoparticle
TL;DR: In this article, the effect of plasmonic nanostructures on the multiexciton dynamics of a single CdSe/ZnS core/shell colloidal nanocrystal quantum dot was investigated.