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High-Performance Red Transparent Quantum Dot Light-Emitting Diodes via Fully Solution-Processed MXene/Ag NWs Top Electrode Journal article
Su, Daojian, Ding, Ting, Gao, Peili, Liu, Hang, Song, Yinman, Yuan, Guoqiang, He, Xin, Meng, Fanyuan, Wang, Shuangpeng. High-Performance Red Transparent Quantum Dot Light-Emitting Diodes via Fully Solution-Processed MXene/Ag NWs Top Electrode[J]. ACS APPLIED MATERIALS & INTERFACES, 2024, 16(40), 54189-54198.
Authors:  Su, Daojian;  Ding, Ting;  Gao, Peili;  Liu, Hang;  Song, Yinman; et al.
Favorite | TC[WOS]:0 TC[Scopus]:0  IF:8.3/8.7 | Submit date:2024/11/05
Transparent Electrodes  Mxene  Silver Nanowires  Interface Engineering  Organic Light-emitting Diodes  
Graphene-Metal Nanocrystal Hybrid Materials for Bioapplications Review article
2024
Authors:  Cao, Xiaoxu;  Li, Shengkai;  Wang, Shen;  Guo, Rongshen;  Dong, Qian; et al.
Favorite | TC[WOS]:0 TC[Scopus]:0  IF:8.3/8.7 | Submit date:2024/11/05
Antibacterial  Bioimaging  Biosensing  Cancer Therapy  Graphene-metal Nanocrystal Hybrid Materials  
Investigating Material Interface Diffusion Phenomena through Graph Neural Networks in Applied Materials Journal article
Zhao, Zirui, Li, Hai Feng. Investigating Material Interface Diffusion Phenomena through Graph Neural Networks in Applied Materials[J]. ACS Applied Materials & Interfaces, 2024, 16(39), 53153-53162.
Authors:  Zhao, Zirui;  Li, Hai Feng
Favorite | TC[WOS]:0 TC[Scopus]:0  IF:8.3/8.7 | Submit date:2024/10/10
Graph Neural Networks (Gnns)  Interface Diffusion  Material Properties Prediction  Atomic Structure Modeling  Semiconductor Interfaces  
Large-Scale Wearable Textile-Based Sweat Sensor with High Sensitivity, Rapid Response, and Stable Electrochemical Performance Journal article
Ma, Xiangda, Wu, Xueqi, Luo, Wencan, Liu, Zijin, Wang, Fei, Yu, Hui. Large-Scale Wearable Textile-Based Sweat Sensor with High Sensitivity, Rapid Response, and Stable Electrochemical Performance[J]. ACS APPLIED MATERIALS & INTERFACES, 2024, 16(14), 18202-18212.
Authors:  Ma, Xiangda;  Wu, Xueqi;  Luo, Wencan;  Liu, Zijin;  Wang, Fei; et al.
Favorite | TC[WOS]:0 TC[Scopus]:1  IF:8.3/8.7 | Submit date:2024/05/02
Carbon Fibers  Electrolyte Monitoring  Potassium Ion  Real-time Monitoring  Wearable Biosensor  
Applying the Wake-Up-like Effect to Enhance the Capabilities of Two-Dimensional Ferroelectric Field-Effect Transistors Journal article
Cheng, Jie, Yuan, Jun Hui, Li, Pei Yue, Wang, Jiafu, Wang, Yuan, Zhang, You Wei, Zheng, Yu, Zhang, Pan. Applying the Wake-Up-like Effect to Enhance the Capabilities of Two-Dimensional Ferroelectric Field-Effect Transistors[J]. ACS Applied Materials and Interfaces, 2024, 16(19), 24987-24998.
Authors:  Cheng, Jie;  Yuan, Jun Hui;  Li, Pei Yue;  Wang, Jiafu;  Wang, Yuan; et al.
Favorite | TC[WOS]:0 TC[Scopus]:0  IF:8.3/8.7 | Submit date:2024/06/05
Cuinp2s6  Ferroelectric Field-effect Transistors  Neuromorphic Computing  Two-dimensional Materials  Wake-up Effect  
Air-Stable Self-Driven UV Photodetectors on Controllable Lead-Free CsCu2I3 Microwire Arrays Journal article
Zhang, Zhi Hong, Yan, Shan Shan, Chen, Yu Long, Lian, Zhen Dong, Fu, Ai, Kong, You Chao, Li, Lin, Su, Shi Chen, Ng, Kar Wei, Wei, Zhi Peng, Liu, Hong Chao, Wang, Shuang Peng. Air-Stable Self-Driven UV Photodetectors on Controllable Lead-Free CsCu2I3 Microwire Arrays[J]. ACS APPLIED MATERIALS & INTERFACES, 2024, 16(8), 10398-10406.
Authors:  Zhang, Zhi Hong;  Yan, Shan Shan;  Chen, Yu Long;  Lian, Zhen Dong;  Fu, Ai; et al.
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Cscu2i3  Microwire Arrays  Perovskite  Self-driven Photodetector  Ultraviolet Photodetection  
Facile and Stable CuInO2 Nanoparticles for Efficient Electrochemical CO2 Reduction Journal article
Yin, Lihong, Li, Zhiqiang, Feng, Jinxian, Zhou, Pengfei, Qiao, Lulu, Liu, Di, Yi, Zhibin, Ip, Weng Fai, Luo, Guangfu, Pan, Hui. Facile and Stable CuInO2 Nanoparticles for Efficient Electrochemical CO2 Reduction[J]. ACS Applied Materials and Interfaces, 2023, 15(40), 47135-47144.
Authors:  Yin, Lihong;  Li, Zhiqiang;  Feng, Jinxian;  Zhou, Pengfei;  Qiao, Lulu; et al.
Favorite | TC[WOS]:8 TC[Scopus]:8  IF:8.3/8.7 | Submit date:2024/01/10
Cuino2 Nanoparticles  Electrocatalysts  Electrochemical Co2 Reduction Reaction  First-principles Calculations  Hydrogen Evolution Reaction  
Conductive N, S doped Copolymers as Stable Metal-Free Electrocatalysts for Water Splitting Journal article
Mathew, Sobin, Park, Ki Hyun, Han, Youri, Hui, Kwun Nam, Li, Oi Lun, Cho, Young Rae. Conductive N, S doped Copolymers as Stable Metal-Free Electrocatalysts for Water Splitting[J]. ACS Applied Materials and Interfaces, 2023, 15(40), 46829-46839.
Authors:  Mathew, Sobin;  Park, Ki Hyun;  Han, Youri;  Hui, Kwun Nam;  Li, Oi Lun; et al.
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Conducting Polymers  Copolymers  Hydrogen Evolution Reaction  Metal-free Catalyst  Oxygen Evolution Reaction  Proton Affinity  Water Splitting  
Reliable and Scalable Piezoresistive Sensors with an MXene/MoS2 Hierarchical Nanostructure for Health Signals Monitoring Journal article
Wang, Fengming, Su, Daojian, Ma, Ke, Qin, Bolong, Li, Baijun, Li, Junxian, Zhang, Chi, Xin, Yue, Huang, Zundi, Yang, Weijia, Wang, Shuangpeng, He, Xin. Reliable and Scalable Piezoresistive Sensors with an MXene/MoS2 Hierarchical Nanostructure for Health Signals Monitoring[J]. ACS Applied Materials and Interfaces, 2023, 15(37), 44001-44011.
Authors:  Wang, Fengming;  Su, Daojian;  Ma, Ke;  Qin, Bolong;  Li, Baijun; et al.
Favorite | TC[WOS]:11 TC[Scopus]:12  IF:8.3/8.7 | Submit date:2024/01/10
Arrays  Health Signal Monitoring  Hierarchical Nanostructure  Human−machine Interface  Mxene/mos2  Piezoresistive Sensors  
Breathable Fabrics with Robust Superhydrophobicity via In Situ Formation of Hierarchical Surface Morphologies Journal article
Ou, Huifang, Dai, Ziyi, Gao, Yibo, Zhou, Bingpu. Breathable Fabrics with Robust Superhydrophobicity via In Situ Formation of Hierarchical Surface Morphologies[J]. ACS Applied Materials and Interfaces, 2023, 15(33), 39989-40000.
Authors:  Ou, Huifang;  Dai, Ziyi;  Gao, Yibo;  Zhou, Bingpu
Favorite | TC[WOS]:5 TC[Scopus]:4  IF:8.3/8.7 | Submit date:2024/01/10
Breathability  Flexibility  Hierarchical Structures  Microcilia  Superhydrophobic Fabric