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Jiandong Ye

Researcher at Nanjing University

Publications -  359
Citations -  6658

Jiandong Ye is an academic researcher from Nanjing University. The author has contributed to research in topics: Chemistry & Chemical vapor deposition. The author has an hindex of 32, co-authored 280 publications receiving 4471 citations. Previous affiliations of Jiandong Ye include Singapore Science Park & Australian National University.

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High performance lateral Schottky diodes based on quasi-degenerated Ga 2 O 3

TL;DR: Ni/β-Ga2O3 lateral Schottky barrier diodes (SBDs) were fabricated on a Sn-doped quasi-degenerate n+-Ga 2O3 bulk substrate as mentioned in this paper.
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The study of electronic structure and absorption coefficient of ZnTe:O alloys: A GGA+U method

TL;DR: In this paper, the electronic structures and absorption coefficient for highly mismatched ZnTe1−xOx alloys have been investigated on the basis of the GGA+U approximation.
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Large bandgap tunability of GaN/ZnO pseudobinary alloys through combined engineering of anions and cations

TL;DR: In this article, a bandgap engineering of gallium zinc oxynitride (GaZnON) thin films has been performed by the GaN/ZnO pseudobinary alloying in a periodical superlattice order through the pulsed laser deposition technique.
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Enhancing the bioactivity of hydroxyapatite bioceramic via encapsulating with silica-based bioactive glass sol.

TL;DR: In this article , a 1 and 3 wt% Silica-based bioglass (BG) with superior biological performance has been introduced into HA bioceramic to overcome this insufficiency; however, the composite Bioceramics are usually prepared by traditional mechanical mixture of HA and BG powders which tremendously weakens their mechanical performance.
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Microstructure and Mechanical Properties of Calcium Phosphate Cement/Gelatine Composite Scaffold with Oriented Pore Structure for Bone Tissue Engineering

TL;DR: In this article, the macroporous calcium phosphate(CPC) cement with oriented pore structure was prepared by freeze casting and the results showed that the porosity of the as-prepared porous CPC was measured to be 87.6% by Archimede's principle.