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Ying Dai

Researcher at Shandong University

Publications -  827
Citations -  41002

Ying Dai is an academic researcher from Shandong University. The author has contributed to research in topics: Photocatalysis & Band gap. The author has an hindex of 87, co-authored 706 publications receiving 31538 citations. Previous affiliations of Ying Dai include North Carolina State University & Northern Illinois University.

Papers
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Properties of individually addressable ferroelectric nanocapacitor arrays fabricated by focused ion beam milling.

TL;DR: The size effects were dominated by the ion damage owing to high damaged-layer-to-volume ratio in the smaller cells, while the dispersion of properties was dominated byThe inhomogeneous texture and various domain structures of the cells.
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A Bismuth-Based Metal-Organic Framework for Visible-Light-Driven Photocatalytic Decolorization of Dyes and Oxidation of Phenylboronic Acids.

TL;DR: In this paper , a Bi-based metal-organic framework (MOF; Bi-MMTAA) with 2-mercapto-4-methyl-5-thiazoleacetic acid as the organic ligand is synthesized.
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STUDY OF ELECTRONIC STRUCTURE AND NEGATIVE ELECTRON AFFINITY OF NANODIAMONDS PASSIVATED BY CHn SPECIES

TL;DR: In this paper, a series of diamond nanoparticles with different surface terminations, (I) CHn (n = 1, 2) and (II, CHn(n = 3) species, have been investigated by means of density functional theory (DFT) to probe the effects of the terminated CHn species on the geometric and electronic structures and related properties.
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Single-Crystal Uniform Tubes of ZnO

TL;DR: A simple and cheap method has been applied to synthesize single-crystal uniform ZnO tubes with high yield in a hydrothermal process using Zn(NO3)2⋅6H2O and methenamine as reaction precursors at low temperature as mentioned in this paper.
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Growth of bulk BiOBr single crystals for the characterization of intrinsic semi-conductive properties and application in ultraviolet photodetectors

TL;DR: In this paper , a high quality bulk BiOBr crystal with mm size was obtained by a space-confined chemical vapor transport strategy, and its intrinsic semi-conductive properties were characterized.