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Huiqiong Zhou

Researcher at Center for Excellence in Education

Publications -  63
Citations -  2308

Huiqiong Zhou is an academic researcher from Center for Excellence in Education. The author has contributed to research in topics: Organic solar cell & Perovskite (structure). The author has an hindex of 19, co-authored 63 publications receiving 1389 citations. Previous affiliations of Huiqiong Zhou include Chinese Academy of Sciences.

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A Highly Efficient Non-Fullerene Organic Solar Cell with a Fill Factor over 0.80 Enabled by a Fine-Tuned Hole-Transporting Layer.

TL;DR: This work offers a simple and viable option of HTL modification to realize highly efficient OSCs by mixing WOx nanoparticles with a poly(3,4-ethylenedioxythiophene):polystyrene sulfonate emulsion, the surface free energy of the HTL is improved and the morphology of the active layer is optimized.
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A Biopolymer Heparin Sodium Interlayer Anchoring TiO2 and MAPbI3 Enhances Trap Passivation and Device Stability in Perovskite Solar Cells

TL;DR: This work demonstrates a highly viable and facile interface strategy using biomaterials to afford high-performance and stable perovskite solar cells enabled by a biopolymer heparin sodium (HS) interfacial layer.
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Fine Multi-Phase Alignments in 2D Perovskite Solar Cells with Efficiency over 17% via Slow Post-Annealing.

TL;DR: Investigation with optical spectroscopy coupled with structural analyses indicates that enhanced crystal orientation and favorable alignment on the multiple perovskite phases is obtained with SPA treatment, which promotes carrier transport/extraction and suppresses Shockley-Read-Hall charge recombination in the solar cell.
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Interfacial Modification in Organic and Perovskite Solar Cells

TL;DR: Recent progress in interfacial doping with biopolymers and ionic salts to modulate the cathode interface properties in OSCs is reviewed and strategies of improving the surface properties in widely used PEDOT:PSS for narrowband O SCs or replacing it by novel organic conjugated materials will be touched upon.
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Molecular Engineering for Two-Dimensional Perovskites with Photovoltaic Efficiency Exceeding 18%

TL;DR: In this paper, a series of alkylic ammonium spacers (ethylamine to hexylamine) with different chain lengths were used to realize modified crystallization, phase distribution, and quantum-confined behaviors in Ruddlesden-Popper 2D perovskites.