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Free‐standing BiOI@MWCNTs photoelectrodes for photo‐rechargeable zinc‐ion batteries Journal article
Long, Bei, Liang, Xiaojie, Pei, Yong, Wu, Xiongwei, Wang, Xianyou, Law, Man Kay. Free‐standing BiOI@MWCNTs photoelectrodes for photo‐rechargeable zinc‐ion batteries[J]. Journal of Materials Science and Technology, 2024, 198, 137-142.
Authors:  Long, Bei;  Liang, Xiaojie;  Pei, Yong;  Wu, Xiongwei;  Wang, Xianyou; et al.
Favorite | TC[WOS]:4 TC[Scopus]:5  IF:11.2/10.4 | Submit date:2024/05/16
Free-standing Bioi@mwcnts Film  Photoactive Electrode  Photoaccelerated Chemical-electric Energy Conversion  Long Cyclic Life  Photo-rechargeable Zinc Ion Battery  
Unraveling the complex infiltration and repairing behaviors in defect coatings Journal article
Peng, Shuaiwei, Wang, Tianguan, Huang, Guang, Tang, Zhuofu, Shao, Ziya, Feng, Zhiyuan, Lei, Bing, Meng, Guozhe, Guo, Honglei. Unraveling the complex infiltration and repairing behaviors in defect coatings[J]. Journal of Materials Science and Technology, 2024, 187, 258-269.
Authors:  Peng, Shuaiwei;  Wang, Tianguan;  Huang, Guang;  Tang, Zhuofu;  Shao, Ziya; et al.
Favorite | TC[WOS]:1 TC[Scopus]:1  IF:11.2/10.4 | Submit date:2024/05/16
Glass Capillary  Infiltration  Repair Agents  Surface Energy  
Realizing the highly reversible Zn2+ and Na+ dual ions storage in high-crystallinity nickel hexacyanoferrate microcubes for aqueous zinc-ion batteries Journal article
Wang,Kexuan, Xu,Zhu, Li,Heng, Wang,Huibo, Ge,Mingzheng, Liu,Jilei, Li,Shengwen, Hu,Zekun, Zhu,Mengyu, Zhang,Yanyan, Tang,Yuxin, Chen,Shi. Realizing the highly reversible Zn2+ and Na+ dual ions storage in high-crystallinity nickel hexacyanoferrate microcubes for aqueous zinc-ion batteries[J]. Journal of Materials Science and Technology, 2023, 164, 102-110.
Authors:  Wang,Kexuan;  Xu,Zhu;  Li,Heng;  Wang,Huibo;  Ge,Mingzheng; et al.
Favorite | TC[WOS]:17 TC[Scopus]:16  IF:11.2/10.4 | Submit date:2023/08/03
Aqueous Zinc-ion Batteries  Dual Ions Storage  High Crystallinity  Ion Storage Mechanism  Prussian Blue Analogues  
Corrosion engineering boosting bulk Fe50Mn30Co10Cr10 high-entropy alloy as high-efficient alkaline oxygen evolution reaction electrocatalyst Journal article
Pengfei Zhou, Dong Liu, Yuyun Chen, Mingpeng Chen, Yunxiao Liu, Shi Chen, Chi Tat Kwok, Yuxin Tang, Shuangpeng Wang, Hui Pan. Corrosion engineering boosting bulk Fe50Mn30Co10Cr10 high-entropy alloy as high-efficient alkaline oxygen evolution reaction electrocatalyst[J]. Journal of Materials Science and Technology, 2022, 109, 267-275.
Authors:  Pengfei Zhou;  Dong Liu;  Yuyun Chen;  Mingpeng Chen;  Yunxiao Liu; et al.
Favorite | TC[WOS]:48 TC[Scopus]:51  IF:11.2/10.4 | Submit date:2022/05/13
Electrocatalysis  High Entropy Alloy  Corrosion Engineering  Self-supporting  Oxygen Evolution Reaction  
Trigger and response mechanisms for controlled release of corrosion inhibitors from micro/nanocontainers interpreted using endogenous and exogenous stimuli: A review Journal article
Chen, Shan, Huang, Zhongyu, Yuan, Mingzhe, Huang, Guang, Guo, Honglei, Meng, Guozhe, Feng, Zhiyuan, Zhang, Ping. Trigger and response mechanisms for controlled release of corrosion inhibitors from micro/nanocontainers interpreted using endogenous and exogenous stimuli: A review[J]. Journal of Materials Science and Technology, 2022, 125, 67-80.
Authors:  Chen, Shan;  Huang, Zhongyu;  Yuan, Mingzhe;  Huang, Guang;  Guo, Honglei; et al.
Favorite | TC[WOS]:30 TC[Scopus]:34  IF:11.2/10.4 | Submit date:2022/05/13
Controlled Release  Corrosion Protection  Mechanism  Smart Micro/nanocontainers  Stimuli-responsive  
Significant reduction in friction and wear of a high-entropy alloy via the formation of self-organized nanolayered structure Journal article
Lu Yang, Zhuo Cheng, Weiwei Zhu, Cancan Zhao, Fuzeng Ren. Significant reduction in friction and wear of a high-entropy alloy via the formation of self-organized nanolayered structure[J]. Journal of Materials Science and Technology, 2021, 73, 1-8.
Authors:  Lu Yang;  Zhuo Cheng;  Weiwei Zhu;  Cancan Zhao;  Fuzeng Ren
Favorite | TC[WOS]:45 TC[Scopus]:49  IF:11.2/10.4 | Submit date:2021/12/07
High-entropy Alloy  Nanolayering  Sliding Wear