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Wei Ou-Yang

Researcher at East China Normal University

Publications -  77
Citations -  1610

Wei Ou-Yang is an academic researcher from East China Normal University. The author has contributed to research in topics: Field electron emission & Pentacene. The author has an hindex of 19, co-authored 69 publications receiving 1155 citations. Previous affiliations of Wei Ou-Yang include Tokyo Institute of Technology & National Institute for Materials Science.

Papers
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High-Performance Inorganic Perovskite Quantum Dot-Organic Semiconductor Hybrid Phototransistors.

TL;DR: High-performance phototransistors based on IHP QDs hybridized with organic semiconductors (OSCs) are developed that exhibit outstanding optoelectronic properties and are superior to state-of-the-art IHP photodetectors.
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Constructing Efficient and Stable Perovskite Solar Cells via Interconnecting Perovskite Grains

TL;DR: The results indicate that the presence of TPA in perovskite film can greatly improve the performance of PSCs as well as their moisture resistance and thermal stability.
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Shuttle-like carbon-coated FeP derived from metal-organic frameworks for lithium-ion batteries with superior rate capability and long-life cycling performance

TL;DR: In this paper, a shuttle-like hollow and porous carbon-coated FeP (FeP@C) structures were synthesized from Fe-based metal-organic frameworks (MOFs) MIL-88 as precursors and used as anodes for lithium-ion batteries.
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Efficient and ultraviolet durable planar perovskite solar cells via a ferrocenecarboxylic acid modified nickel oxide hole transport layer

TL;DR: The enhanced performance of the PSCs is attributed to better crystallization of the perovskite layer, the passivation effect of FDA, superior interface contact at the NiOx/perovskites layers and enhancement of the electrical conductivity of the FDA modified NiOx layer.
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Solution-processed Sr-doped NiOx as hole transport layer for efficient and stable perovskite solar cells

TL;DR: In this paper, smooth and compact Sr-doped NiOx films with different Sr doping concentration were successfully prepared through a simple low temperature sol-gel method, which can greatly improve hole transport and extraction abilities and reduce carrier recombination, resulting in high power conversion efficiency.