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Xiao-Fang Jiang

Researcher at South China Normal University

Publications -  141
Citations -  7747

Xiao-Fang Jiang is an academic researcher from South China Normal University. The author has contributed to research in topics: Perovskite (structure) & Polymer solar cell. The author has an hindex of 40, co-authored 132 publications receiving 6044 citations. Previous affiliations of Xiao-Fang Jiang include South China University of Technology & National University of Singapore.

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n-Type Water/Alcohol-Soluble Naphthalene Diimide-Based Conjugated Polymers for High-Performance Polymer Solar Cells

TL;DR: Two novel naphthalene diimide-based, self-doped, n-type water/alcohol-soluble conjugated polymers (WSCPs) that can be processed with a broad thickness range of 5 to 100 nm as efficient electron transporting layers (ETLs) for high-performance PSCs are reported.
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High-Performance Ternary Organic Solar Cell Enabled by a Thick Active Layer Containing a Liquid Crystalline Small Molecule Donor.

TL;DR: The results show that the introduction of highly crystalline small molecule donors into ternary OSCs is an effective means to enhance the charge transport and thus increase the active layer thickness of ternARY Oscs to make them more suitable for roll-to-roll production than previous thinner devices.
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Microfiber-based few-layer black phosphorus saturable absorber for ultra-fast fiber laser

TL;DR: The results not only demonstrate that black phosphorus might be another promising SA material for ultrafast photonics, but also provide a practical solution to solve the optical damage problem of black phosphorus by assembling with waveguide structures such as microfiber.
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Microfiber-based few-layer black phosphorus saturable absorber for ultra-fast fiber laser

TL;DR: In this paper, a microfiber-based few-layer black phosphorus (BP) SA device is proposed to solve the optical damage problem of black phosphorus by assembling with waveguide structures such as micro-fiber, which can deliver the mode-locked pulse with duration down to 940 fs with central wavelength tunable from 1532 nm to 1570 nm.
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Optimisation of processing solvent and molecular weight for the production of green-solvent-processed all-polymer solar cells with a power conversion efficiency over 9%

TL;DR: In this paper, the synergistic effects of processing solvents and molecular weight on the photovoltaic performance of all-polymer solar cells were investigated, which consist of an n-type polymer N2200 and a p-type wide bandgap polymer PTzBI that are made of benzodithiophene and imide-functionalized benzotriazole units.