代表性学术论文:
(1). Liang Chu, Chen Yun, Wu Min, Wang Kai, Zhang Wenkui*, Gan Yongping, Huang Hui, Chen Jian, Xia Yang, Zhang Jun, Zheng Shiyou*, Pan Hongge*, Green synthesis of graphite from CO2 without graphitization process of amorphous carbon, Nature Communications, 2021, 12, 119.(Nature子刊IF=17.694)
(2). Xu Ying, Ruan Jiafeng, Pang Yuepeng, Sun Hao, Liang Chu*, Li Haiwen, Yang Junhe*, Zheng Shiyou*, Homologous strategy to construct high-performance coupling electrodes for advanced potassium-ion hybrid capacitors, Nano-Micro Letters, 2021, 13, 14.(IF=23.655)
(3). Li Jiahui, Wang Yangfeng, Ye Zhangze, Hu Mengru, Zheng Xiaohua, Li Peng, Liang Chu*, Self-templated synthesis of boron-doped porous carbon by chemical interaction of 2LiBH4⋅CO2 with CO2, Chemical Engineering Journal, 2023, 454, 140205. (IF=16.744)
(4). Wei Wenpin, Wang Lei, Liang Chu*, Liu Wenjie, Li Chen*, An Yabin, Zhang Lixin, Sun Xianzhong, Wangkai, Zhang Haitao, Zhang Xiong*, Ma Yanwei*, Interface engineering of CoSe2/N-doped graphene heterostructure with ultrafast pseudocapacitive kinetics for high-performance lithium-ion capacitors, Chemical Engineering Journal, 2023, 474, 145788. (IF=16.744)
(5). Liang Chu, Pan Liangbin, Liang Sheng, Xia Yang, Liang Zhiqiang*, Gan Yongping, Huang Hui, Zhang Jun, Zhang Wenkui*, Ultraefficient conversion of CO2 into morphology-controlled nanocarbons: A sustainable strategy toward greenhouse gas utilization, Small, 2019, 15, 1902249. (IF=15.153)
(6). Liang Chu, Liang Sheng, Xia Yang, Chen Yun, Huang Hui*, Gang Yongping, Tao Xingyon, Zhang Jun, Zhang wenkui*, H2O-induced self-propagating synthesis of hierarchical porous carbon: a promising lithium storage material with superior rate capability and ultra-long cycling life, Journal of Materials Chemistry A, 2017, 5,18221-18229. (IF=14.511)
(7). Liang Sheng, Xia Yang, Liang Chu*, Gan Yongping, Huang Hui, Zhang Jun, Tao Xinyong, Sun Wei, Han Weiqiang, Zhang Wenkui*, A green and facile strategy for the low-temperature and rapid synthesis of Li2S@PC-CNT cathodes with high Li2S content for advanced Li-S batteries, Journal of Materials Chemistry A, 2018, 6, 9906-9914. (IF=14.511)
(8). Liang Chu, Liu Yongfeng*, Gao Mingxia, Pan Hongge*, Understanding the role of K in the significantly improved hydrogen storage properties of a KOH-doped Li-Mg-N-H system, Journal of Materials Chemistry A, 2013, 1, 5031-5036. (IF=14.511)
(9). Fang Ruyi, Liang Chu (共同一作), Xia Yang*, Xiao Zhen, Huang Hui, Gan Yongping, Zhang Jun, Tao Xinyong, Zhang Wenkui*, Supercritical CO2 mediated incorporation of sulfur into carbon matrix as cathode materials towards high-performance lithium-sulfur batteries, Journal of Materials Chemistry A, 2018, 6, 212-222. (IF=14.511)
(10). Zeng Chengfu, Wang Kai, Pan Liangbin, Li Bo, Li Jiahui, Zhou Luoting, Zhang Wenkui, Liang Chu*, Pan Hongge*, Role of lithium hydride in tuning morphology and porosity of nanocarbons derived from CO2, Materials Today Nano, 2021, 16, 100134. (IF=13.364)
(11). Liang Chu, Liang Sheng, Xia Yang, Gan Yongping, Fang Libin, Jiang Yinzhu*, Tao Xinyong, Huang Hui, Zhang Jun, Zhang Wenkui*, Synthesis of hierarchical porous carbon from metal carbonates towards high-performance lithium storage, Green Chemistry, 2018, 20, 1484-1490. (IF=11.034)
(12). Huang Hui, Cheng Cheng, Liang Sheng, Liang Chu*, Xia Yang, Gan Yongping, Zhang Jun, Tao Xinyong, Zhang Wenkui*, Toast-like porous carbon derived from one-step reduction of CaCO3 for electrochemical lithium storage, Carbon, 2018, 130, 559-565. (IF=11.307)
(13). Chen Yun, Sun Xin, Zhang Wenkui, Gan Yongping, Xia Yang, Zhang Jun, Huang Hui, Liang Chu*, Pan Hongge*, Hydrogen pressure-dependent dehydrogenation performance of the Mg(NH2)2−2LiH−0.07KOH system, ACS Applied Materials & Interfaces, 2020, 15, 1902249. (IF=10.383)
(14). Liang Sheng, Liang Chu*, Xia Yang, Xu Haohui, Huang Hui, Tao Xinyong, Gan Yongping, Zhang Wenkui*, Facile synthesis of porous Li2S@C composites as cathode materials for lithium-sulfur batteries, Journal of Power Sources, 2016, 306, 200-207. (IF=9.794)
(15). Liang Chu*, Zeng Chengfu, Liang Sheng, 撰写了美国ACS出版社的新书《Solid State Batteries Volume 2: Materials and Advanced Devices》中的第1章“Carbon-Based Electrodes”, 2022, P1-14。