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Hong Jin Fan

Researcher at Nanyang Technological University

Publications -  343
Citations -  41147

Hong Jin Fan is an academic researcher from Nanyang Technological University. The author has contributed to research in topics: Nanowire & Anode. The author has an hindex of 90, co-authored 308 publications receiving 32984 citations. Previous affiliations of Hong Jin Fan include Hunan University & Centre national de la recherche scientifique.

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Design Strategies for High‐Energy‐Density Aqueous Zinc Batteries

TL;DR: In this paper , the authors comprehensively summarize the rational design strategies of high-energy-density zinc batteries and critically analyze the positive effects and potential issues of these strategies in optimizing the electrochemistry, cathode materials, electrolytes, and device architecture.
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High-temperature lasing characteristics of randomly assembled SnO2 backbone nanowires coated with ZnO nanofins

TL;DR: In this paper, the authors investigated the lasing properties of randomly assembled SnO2 backbone nanowires coated with ZnO nanofins and found that the hierarchical structures can sustain ultraviolet random lasing action even at substrate temperature higher than 700 K and the corresponding characteristic temperature was found to be about 390 K.
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Bond engineering of molecular ferroelectrics renders soft and high-performance piezoelectric energy harvesting materials

TL;DR: In this paper , a molecular bond weakening strategy was proposed to mitigate the issues in organic-inorganic hybrid piezoelectric materials by introducing large-size halide elements, leading to a softening effect on bond strength and reduction in polarization switching barrier.
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Solution-process coating of vertical ZnO nanowires with ferroelectrics

TL;DR: A modified misted deposition process by combining substrate and mist heating for the deposition of ferroelectrics on 3D nanostructures is developed, a significant step towards the end-goal of fully integrated ZnO nanowires with ferroelectric capacitors, which may be useful for the light-emitting applications of ZNO.