Z
Zhihui Chen
Researcher at Taiyuan University of Technology
Publications - 53
Citations - 987
Zhihui Chen is an academic researcher from Taiyuan University of Technology. The author has contributed to research in topics: Photonic crystal & Transmittance. The author has an hindex of 14, co-authored 44 publications receiving 777 citations. Previous affiliations of Zhihui Chen include Beijing University of Posts and Telecommunications & Zhejiang Sci-Tech University.
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Enhancing the Brightness of Quantum Dot Light-Emitting Diodes by Multilayer Heterostructures
TL;DR: In this paper, the authors proposed multilayer heterostructures on a SiO2 substrate, which provides multiple reflective bands with the very high reflective efficiency of nearly up to 100%.
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High Q-factor with the excitation of anapole modes in dielectric split nanodisk arrays
TL;DR: This paper shows that the obstacles to achieve high Q-factor can be effectively suppressed by using dielectric nanodisk arrays, where the Q-Factor is about one order larger than that of the single disks associated with the nonradiating anapole modes and the collective oscillations of the arrays.
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Benzimidazole-functionalized Zr-UiO-66 nanocrystals for luminescent sensing of Fe 3+ in water
Yingying Dong,Hanzhuo Zhang,Fan Lei,Mei Liang,Xuefeng Qian,Peilian Shen,Hui Xu,Zhihui Chen,Zhihui Chen,Junkuo Gao,Juming Yao +10 more
TL;DR: In this article, a benzimidazole-functionalized UiO-66 nanocrystal was successfully fabricated via microwave synthesis, which exhibited octahedral morphology with a diameter smaller than 200nm and could disperse well in water and common organic solvents.
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Copper nanoparticles with near-unity, omnidirectional, and broadband optical absorption for highly efficient solar steam generation.
Yawen Lin,Zhihui Chen,Liang Fang,Ming Meng,Zhanfeng Liu,Yunsong Di,Cai Weidong,Shisong Huang,Zhixing Gan +8 more
TL;DR: In this work, Cu nanoparticles fabricated simply by a substitution reaction, exhibit a near-unity light absorption, covering a broad incident angle and wavelength range (200-1300 nm), and a high photothermal conversion efficiency of 93% is achieved.
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Resonance Coupling between Molecular Excitons and Nonradiating Anapole Modes in Silicon Nanodisk-J-Aggregate Heterostructures
TL;DR: In this paper, a heterostructure composed of a silicon nanodisk and a uniform molecular Jaggregate ring is used to achieve the resonance coupling between the exciton transition and the anapole mode.