Tohru Sato
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Explore the profile of Tohru Sato including associated specialties, affiliations and a list of published articles.
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55
Citations
796
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Recent Articles
11.
Hattori Y, Kitajima R, Ota W, Matsuoka R, Kusamoto T, Sato T, et al.
Chem Sci
. 2022 Dec;
13(45):13418-13425.
PMID: 36507177
Donor-radical acceptor systems have recently attracted much attention as efficient doublet emitters that offer significant advantages for applications such as OLEDs. We employed an alkylbenzene (mesityl group) as the simplest...
12.
Kondo R, Maeda S, Kikuchi A, Kiyono H, Sato T
PLoS One
. 2022 Oct;
17(10):e0276001.
PMID: 36227895
Switching inhalation devices is a reasonable option if problems with control, adherence, or inhalation technique occur in patients with asthma treated with inhaled corticosteroid (ICS)/long-acting β2 agonist (LABA). However, evidence...
13.
Kimura S, Uejima M, Ota W, Sato T, Kusaka S, Matsuda R, et al.
J Am Chem Soc
. 2021 Mar;
143(11):4329-4338.
PMID: 33721501
The use of organic radicals as building blocks is an effective approach to the production of open-shell coordination polymers (CPs). Two-dimensional (2D) CPs with honeycomb spin-lattices have attracted attention because...
14.
Ota W, Kojima Y, Hosokawa S, Teramura K, Tanaka T, Sato T
Phys Chem Chem Phys
. 2020 Dec;
23(4):2575-2585.
PMID: 33305299
The role of catalyst support and regioselectivity of molecular adsorption on a metal oxide surface is investigated for NO reduction on a Cu/γ-alumina heterogeneous catalyst. For the solid surface, computational...
15.
Hirono A, Sakai H, Kochi S, Sato T, Hasobe T
J Phys Chem B
. 2020 Oct;
124(44):9921-9930.
PMID: 33085485
A series of azaperylene derivatives such as monoazaperylene (MAPery), 1,6-diazaperylene (1,6-DiAPery), 1,7-diazaperylene (1,7-DiAPery), 1,12-diazaperylene (1,12-DiAPery), triazaperylene (TriAPery), and tetraazaperylene (TetAPery) was synthesized by changing the position and number of nitrogen...
16.
Lian Z, Sakamoto M, Matsunaga H, Vequizo J, Yamakata A, Haruta M, et al.
Nat Commun
. 2018 Jun;
9(1):2314.
PMID: 29899329
Localized surface plasmon resonance (LSPR)-induced hot-carrier transfer is a key mechanism for achieving artificial photosynthesis using the whole solar spectrum, even including the infrared (IR) region. In contrast to the...
17.
Kimura S, Tanushi A, Kusamoto T, Kochi S, Sato T, Nishihara H
Chem Sci
. 2018 Apr;
9(7):1996-2007.
PMID: 29675247
Luminescent monoradicals are expected to show unique properties based on their doublet state, where establishing a method to improve their photostability is an important issue for expanding their photofunctionality. We...
18.
Sato T, Hayashi R, Haruta N, Pu Y
Sci Rep
. 2017 Jul;
7(1):4820.
PMID: 28684761
To elucidate the high external quantum efficiency observed for organic light-emitting diodes using a bisanthracene derivative (BD1), non-radiative transition processes as well as radiative ones are discussed employing time-dependent density...
19.
Hattori Y, Kusamoto T, Sato T, Nishihara H
Chem Commun (Camb)
. 2016 Oct;
52(91):13393-13396.
PMID: 27787527
A rational molecular design for open-shell molecules to enhance their luminescence efficiency was developed. Introduction of fluorine atoms and coordination of gold(i) to PyBTM, a highly stable fluorescent radical containing...
20.
Solis-Fernandez P, Okada S, Sato T, Tsuji M, Ago H
ACS Nano
. 2016 Jan;
10(2):2930-9.
PMID: 26812353
Control of the type and density of charge carriers in graphene is essential for its implementation into various practical applications. Here, we demonstrate the gate-tunable doping effect of adsorbed piperidine...