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Verified CAS / Academic Author2 Decoded Studies

Prof. Yueheng Yu

School of Energy Science and Engineering, Nanjing Tech University

Research Publications & English Decoded Briefs

Showing 2 publications
SCIENCE CHINA Materials2026DOI: 10.1007/s40843-026-4109-2

Ambient Fabrication of Over 19% Efficient Organic Solar Cells via Spontaneous Water-Spreading and Layer-by-Layer Deposition

The fabrication of high-efficiency organic solar cells (OSCs) under ambient conditions remains a formidable challenge due to the sensitivity of active layer morphology to environmental factors. We propose an innovative approach for air-processed devices that combines spontaneous water-spreading film formation with layer-by-layer (LBL) deposition. This method enables the fabrication of donor- and acceptor-dominant bulk heterojunction blend films near the anode and cathode interfacial layers, respectively, optimizing vertical phase separation and enhancing charge transfer efficiency. In the D18:L8-BO system, the device achieves a power conversion efficiency (PCE) of 19.02% with an exceptionally narrow efficiency distribution. Even for devices with an area of 1 cm2, a PCE of 16.56% is attained. After a 1000-hour decay test, the efficiency retains 84.1%. This novel method offers a promising pathway for advancing the industrial application of large-area, highly stable devices with narrow efficiency distribution under ambient conditions.

SCIENCE CHINA Materials2025DOI: 10.1007/s40843-025-3351-2

Highly stable and dendrite-free lithium metal batteries enabled by a novel artificial interphase layer

Lithium metal batteries (LMBs) face critical barriers of inferior cycling stability and safety hazards from uncontrolled lithium dendrite growth. This study constructs a multifunctional hybrid protection layer of Li3Bi/LiF via spontaneous reduction between Li and BiF3. The lithiophilic Li3Bi serves as nucleation seeds to reduce the nucleation barrier and guide uniform Li deposition, while LiF with high ionic conductivity promotes Li+ diffusion kinetics and homogenizes Li+ flux during plating/stripping. The BiF3-Li symmetric cell exhibits excellent Li plating/stripping behavior over 2500 h at 3 mA cm−2 for 3 mAh cm−2 with a low voltage hysteresis of 60 mV. The BiF3-Li||LiFePO4 full cell demonstrates a remarkable capacity retention of 73% after 1700 cycles at 1 C. This work provides a facile strategy for developing multifunctional artificial interlayers and offers valuable insights for the design and fabrication of high-performance LMBs.