论文著作:
1.Han Daliang#; Cui Changjun#; Zhang Kangyu; Wang Zhenxing; Gao Jiachen; Guo Yong; Zhang Zhicheng; Wu Shichao; Yin Lichang; Weng Zhe*; Kang Feiyu*; Yang Quan-Hong*. A nonflammable hydrous organic electrolyte for zinc batteries with enhanced sustainability, Nature Sustainability, 2022, 5, 205.
2.Zishan Han#, Daliang Han#, Zhe Chen#, Jiachen Gao, Guangyi Jiang, Xinyu Wang, Shuaishuai Lyu, Yong Guo, Chuannan Geng, Lichang Yin*, Zhe Weng*; Yang Quan-Hong*. Steering Surface Reconstruction of Copper with Electrolyte Additives for CO2 Electroreduction. Nature Communications, 2022,13, 315
3.Lu Ziyang; Yang Huijun; Guo Yong; Lin Hongxin; Shan Peizhao; Wu Shichao; He Ping; Yang Yong; Yang Quan-Hong*; Zhou Haoshen*. Consummating ion desolvation in hard carbon anodes for reversible sodium storage. Nature Communications, 2024, 15, 3497.
4.Wang Feifei, Zhang Jipeng, Lu Haotian, Zhu Hanbing, Chen Zihui, Wang Lu, Yu Jinyang, You Conghui, Li Wenhao, Song Jianwei, Weng Zhe, Yang Chunpeng *, Yang Quan-Hong*. Production of gas-releasing electrolyte-replenishing Ah-scale zinc metal pouch cells with aqueous gel electrolyte. Nature Communications. 2023, 14, 4211.
5.Li Kaikai#; Zhang Jun#; Lin Dongmei; Wang Da-Wei; Li Baohua; Lv Wei; Sun Sheng; He Yan-Bing; Kang Feiyu; Yang Quan-Hong*; Zhou Limin*; Zhang Tong-Yi*; Evolution of the electrochemical interface in sodium ion batteries with ether electrolytes, Nature Communications, 2019, 10: 725.
6.Han Junwei#; Kong Debin#; Lv Wei#; Tang Dai-Ming#; Han Daliang; Zhang Chao; Liu Donghai; Xiao Zhichang; Zhang Xinghao; Xiao Jing; He Xinzi; Hsia Feng-Chun; Zhang Chen; Tao Ying; Golberg Dmitri; Kang Feiyu; Zhi Linjie; Yang Quan-Hong*; Caging tin oxide in three-dimensional graphene networks for superior volumetric lithium storage, Nature Communications, 2018, 9(1):402.
7.Zhai Yue; Zhong Zitong; Kuang Nannan; Li Qiang; Xu Tianze; He Jiaxing; Li Haimei; Yin Xunjie; Jia Yiran; He Qing; Wu Shichao*; Yang Quan-Hong*. Both Resilience and Adhesivity Define Solid Electrolyte Interphases for a High Performance Anode. Journal of the American Chemical Society, 2024, 146, 22, 15209.
8.Hu Zhonghao#; Geng Chuannan#; Shi Jiwei; Li Qiang; Yang Haotian; Jiang Mingyang; Wang Li; Yang Quan-Hong*; Lv Wei *. In Situ Welding Ionic Conductive Breakpoints for Highly Reversible All-Solid-State Lithium−Sulfur Batteries. Journal of the American Chemical Society, 2024, 10.1021/jacs. 4c13126.
9.Zhao Yufei#; Geng Chuannan#; Wang Li#; Cao Yun; Yang Haotian; Peng Linkai; Jiang Xin; Guo Yong; Ye Xiaolin; Lv Wei*; Yang Quan-Hong*. Engineering catalytic defects via molecular imprinting for high energy Li-S pouch cells, Natural Science Review, 2024, nwae190.
10.Li Qi #; Liu Xiangsi #; Tao Ying #; Huang Jianxing; Zhang Jun*; Yang Chunpeng; Zhang Yibo; Zhang Siwei; Jia Yiran; Lin Qiaowei; Xiang Yuxuan; Lv Wei; Kang Feiyu; Yang Yong*; Yang Quan-Hong*. Sieving carbons promise practical anodes with extensible low-potential plateaus for sodium batteries. National Science Review, 2022, nwac084.
11.Chen Fanqi#; Han Junwei#; Kong Debin#; Yuan Yifei; Xiao Jing; Wu Shichao; Tang Dai-Ming*; Deng Yaqian; Lv Wei; Lu Jun*; Kang Feiyu; Yang Quan-Hong*. 1000 Wh L-1 lithium-ion batteries enabled by crosslink-shrunk tough carbon encapsulated silicon microparticle anodes, National Science Review, 2021, 8: nwab012.
12.Geng Chuannan#; Jiang Xin#; Hong Shuang#; Wang Li#; Zhao Yufei; Qi Jiangshan; Shi Jiwei; Wang Junjie; Peng Linkai; Hu Zhonghao; Guo Yong; Jin Feng-Min; Yang Quan-Hong*;Lv Wei *; Unveiling the Role of Electric Double-Layer in Sulfur Catalysis for Batteries. Advanced Materials, 2024, 36, 2407741.
13.Lu Ziyang; Yang Huijun*; Guo Yong; He Ping; Wu Shichao; Yang Quan-Hong*; Zhou Haoshen*. Electrolyte sieving chemistry in suppressing gas evolution of sodium-metal batteries. Angewandte Chemie-International Edition, 2022, 61, e202206340.
14.Hua Wuxing#; Li Huan#; Pei Chun#; Xia Jingyi; Sun Yafei; Zhang Chen; Lv Wei; Tao Ying; Jiao Yan; Zhang Bingsen; Qiao Shi-Zhang; Wan Ying*; Yang Quan-Hong*. Selective Catalysis Remedies Polysulfide Shuttling in Lithium-Sulfur Batteries. Advanced Materials, 2021, 202101006.
15.Wang Ruochen#; Luo Chong#; Wang Tianshuai; Zhou Guangmin*; Deng Yaqian; He Yanbing; Zhang Qianfan*; Kang Feiyu; Lv Wei*; Yang Quan-Hong*. Bidirectional Catalysts for Liquid-Solid Redox Conversion in Lithium-Sulfur Batteries. Advanced Materials, 2020, 32: 2000315.
16.Deng Yaqian#; Shang Tongxin#; Wu Zhitan#; Tao Ying; Luo Chong; Liang Jiachen; Han Daliang; Lyu Ruiyang; Qi Changsheng; Lv Wei*; Kang Feiyu; Yang Quan-Hong*. Fast gelation of Ti3C2Tx MXene initiated by metal ions. Advanced Materials, 2019, 31: 1902432.
17.Zhou Tianhong; Lv Wei*; Li Jia; Zhou Guangmin; Zhao Yan; Fan Shaoxun; Liu Bilu; Li Baohua*; Kang Feiyu; Yang Quan-Hong*; Twinborn TiO2-TiN heterostructures enabling smooth trapping-diffusion-conversion of polysulfides towards ultralong life lithium-sulfur batteries, Energy Environmental Science, 2017, 10(7): 1694-1703.
18.Yun Qinbai; He Yanbing*; Lv Wei; Zhao Yan; Li Baohua; Kang Feiyu; Yang Quan-Hong*; Chemical dealloying derived 3D porous current collector for Li metal anodes, Advanced Materials, 2016, 28(32): 6932.
19.Li Huan#; Tao Ying#; Zheng Xiaoyu; Luo Jiayan*; Kang Feiyu; Cheng Hui-Ming; Yang Quan-Hong*. Ultra-thick graphene bulk supercapacitor electrodes for compact energy storage. Energy & Environmental Science, 2016, 9: 3135.
20.Xu Yue#; Tao Ying#; Zheng Xiaoyu; Ma Hongyun; Luo Jiayan*; Kang Feiyu; Yang Quan-Hong*. A metal-free supercapacitor electrode material with a record high volumetric capacitance over 800 F cm-3. Advanced Materials, 2015, 27:8082
发明专利:
1.杨全红,陶莹,吕伟,李宝华,游从辉,张辰,康飞宇,高密度高硬度的石墨烯多孔碳素材料的制造方法,2016-10-7,日本,特许6019228.
2.杨全红, 张思伟, 吕伟, ナトリウムイオン電池の電極材料びその製造方法,2020-2-17, 日本,特许6663019号.
3.杨全红,陶莹,吕伟,李宝华,游从辉,张辰,康飞宇,High-Density and High-Hardness Graphene-Based Porous Carbon Material, Method for Making The Same, and Applications Using The Same, 2019-01-29, 美国, US10193156.
4.杨全红,张辰,吕伟,郑晓雨,魏伟,陶莹,李宝华,康飞宇,Methods for Manufacturing Graphene Based Material,2019-01-29,美国,US10193146.
5.杨全红,张辰,吕伟,郑晓雨,魏伟,陶莹,李宝华,康飞宇,Methods for Manufacturing Graphene Based Material,2019-01-22,美国,US10186707.
6.杨全红,张思伟, 吕伟, 나트륨 이온 전지 전극 재료 및 그 제조 방법,2020-7-23, 韩国,10-2139318.
7.杨全红,陈凡奇,韩俊伟,肖菁,孔德斌,陶莹.ミクロン珪素-炭素複合負極材料の製造方法, 日本,特许550267号.
8.杨全红,陶莹,吕伟,李宝华,游从辉,张辰,康飞宇,Graphene Porous Carbon Material,2015-1-23,欧洲,13823871.2