Masaki Saruyama
Overview
Explore the profile of Masaki Saruyama including associated specialties, affiliations and a list of published articles.
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Articles
33
Citations
148
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Recent Articles
1.
Cho K, Tahara H, Yamada T, Muto M, Saruyama M, Sato R, et al.
J Phys Chem Lett
. 2024 Nov;
15(48):11969-11974.
PMID: 39584258
Lead halide perovskite nanocrystals (NCs) have attracted much attention as materials for light-emitting diodes and quantum light sources. A deep understanding of exciton-phonon couplings is essential for obtaining a narrow...
2.
Ohkatsu G, Nishinobo T, Saruyama M, Teranishi T, Majima Y
Nanoscale Adv
. 2024 Aug;
6(17):4346-4351.
PMID: 39170983
Semiconductor quantum dots (QDs) have unique discrete energy levels determined by the particle size and material. Therefore, they have potential applications as novel optical and electronic devices. Among those, colloidal...
3.
Li Z, Saruyama M, Asaka T, Teranishi T
Nat Commun
. 2024 Jun;
15(1):4899.
PMID: 38851762
Flexible control of the composition and morphology of nanocrystals (NCs) over a wide range is an essential technology for the creation of functional nanomaterials. Cation exchange (CE) is a facile...
4.
Saruyama M, Takahata R, Sato R, Matsumoto K, Zhu L, Nakanishi Y, et al.
Chem Sci
. 2024 Feb;
15(7):2425-2432.
PMID: 38362422
Nanocrystal (NC) superlattices (SLs) have been widely studied as a new class of functional mesoscopic materials with collective physical properties. The arrangement of NCs in SLs governs the collective properties...
5.
Cho K, Sato T, Yamada T, Sato R, Saruyama M, Teranishi T, et al.
ACS Nano
. 2024 Feb;
PMID: 38316049
Lead halide perovskite nanocrystals (NCs) have attracted much attention as light-source materials for light-emitting diodes, lasers, and quantum light emitters. The luminescence properties of perovskite NCs and the performance of...
6.
Endo K, Saruyama M, Teranishi T
Nat Commun
. 2023 Jul;
14(1):4241.
PMID: 37454144
Single-atom catalysts dispersed on support materials show excellent heterogeneous catalytic properties that can be tuned using the interactions between the single atoms and the support. Such interactions depend on whether...
7.
Cho K, Yamada T, Saruyama M, Sato R, Teranishi T, Kanemitsu Y
J Chem Phys
. 2023 May;
158(20).
PMID: 37218698
Photoluminescence (PL) spectroscopy of individual semiconductor nanocrystals (NCs) is a powerful method for understanding the intrinsic optical properties of these materials. Here, we report the temperature dependence of the PL...
8.
Cho K, Tahara H, Yamada T, Suzuura H, Tadano T, Sato R, et al.
Nano Lett
. 2022 Sep;
22(18):7674-7681.
PMID: 36121354
Lead halide perovskite nanocrystals (NCs) have outstanding photoluminescence (PL) properties and excellent potential for light-emitting diodes and single-photon sources. Here, we report the multiple-peak structures originating from excitons, trions, and...
9.
Saruyama M, Pelicano C, Teranishi T
Chem Sci
. 2022 Apr;
13(10):2824-2840.
PMID: 35382478
Solar-driven water-splitting has been considered as a promising technology for large-scale generation of sustainable energy for succeeding generations. Recent intensive efforts have led to the discovery of advanced multi-element-compound water-splitting...
10.
Nakagawa F, Saruyama M, Takahata R, Sato R, Matsumoto K, Teranishi T
J Am Chem Soc
. 2022 Mar;
144(13):5871-5877.
PMID: 35345883
Colloidal crystals (CCs) constructed from inorganic nanoparticle (NP) building blocks exhibit properties that cannot be realized from isolated NPs or corresponding bulk counterparts. Because the arrangement of NPs in CCs...