[1] Heping Xie*, Zhiyu Zhao, Tao Liu, Yifan Wu,Cheng Lan, Wenchuan Jiang, Liangyu Zhu, Yunpeng Wang, Dongsheng Yang, Zongping Shao*, A membrane-based seawater electrolyser for hydrogen generation, Nature (Accepted). [2] Shuo Zhai, Heping Xie*, Peng Cui, Daqin Guan, Jian Wang, Siyuan Zhao, Bin Chen, Yufei Song, Zongping Shao* and Meng Ni*, A combined ionic Lewis acid descriptor and machine-learning approach to prediction of efficient oxygen reduction electrodes for ceramic fuel cells, Nature Energy, 2022, 7(9), 866-875. [3] Manchao He, Heping Xie, Suping Peng, YaoDong Jiang, Study on rock mechanics in deep mining engineering, Yanshilixue Yu Gongcheng Xuebao/Chin. J. Rock Mech. Eng., 2005, 24(16), 2803-2813. [4] Heping Xie, Fractals in rock mechanics, Crc Press, 1993. [5] Heping Xie, Yang Ju, LiYun Li, Criteria for strength and structural failure of rocks based on energy dissipation and energy release principles. Yanshilixue Yu Gongcheng Xuebao/Chin. J. Rock Mech. Eng., 24(17), 3003-3010. [6] Zheming Zhu*, Bibhu Mohanty, Heping Xie, Numerical investigation of blasting-induced crack initiation and propagation in rocks, International Journal of Rock Mechanics and Mining Sciences, 2007, 44(3), 412-424. [7] HePing Xie, Feng Gao, Yang Ju, Research and development of rock mechanics in deep ground engineering. Chinese Journal of Rock Mechanics and Engineering, 34(11), 2161-2178. [8] Heping Xie, William G Pariseau, Fractal character and mechanism of rock bursts, International Journal of Rock Mechanics and Mining Sciences & Geomechanics Abstracts, 1993, 30(4), 343-350. [9] Heping Xie*, Liyun Li, Ruidong Peng, Yang Ju, Energy analysis and criteria for structural failure of rocks, Journal of Rock Mechanics and Geotechnical Engineering, 2009, 1(1), 11-20. [10] Heping Xie*. Ruidong Peng, and Yang Ju, Energy dissipation of rock deformation and fracture, Chinese Journal of Rock Mechanics and Engineering, 23(21), 3565-3570. [11] Zheming Zhu*, Heping Xie, Bibhu Mohanty, Numerical investigation of blasting-induced damage in cylindrical rocks, International Journal of Rock Mechanics and Mining Sciences, 2008, 45(2), 111-121. [12] HePing Xie, Hongwei Zhou, Dongjie Xue, HongWei Wang, Ru Zhang, Feng Gao, Research and consideration on deep coal mining and critical mining depth, Journal of China Coal Society, 2012, 37(4), 535-542. [13] Heping Xie, Yang Ju, Liyun Li, Ruidong Peng, Energy mechanism of deformation and failure of rock masses. Chinese Journal of Rock Mechanics and Engineering, 27(9), 1729-1740. [14] Yang Ju*, Heping Xie, Zemin Zheng, Jinbo Lu, Lingtao Mao, Feng Gao, Ruidong Peng, Visualization of the complex structure and stress field inside rock by means of 3D printing technology, Chinese science bulletin, 2014, 59(36), 5354-5365. [15] Heping Xie*, Shuo Zhai, Tao Liu, Hailong Liao, Yuan Zhang, Wei Zhou, Zongping Shao, Meng Ni, Bin Chen, Cu-modified Ni foams as three-dimensional outer anodes for high-performance hybrid direct coal fuel cells[J]. Chemical Engineering Journal, 2021, 410, 128239. [16] Heping Xie*, Cheng Lan, Bin Chen, Fuhuan Wang, Tao Liu, Noble-metal-free catalyst with enhanced hydrogen evolution reaction activity based on granulated Co-doped Ni-Mo phosphide nanorod arrays, Nano Research, 2020, 13(12), 3321-3329. [17] Heping Xie*, Xiaolin Gao, Tao Liu, Bin Chen, Yifan Wu, Wenchuan Jiang, Electricity generation by a novel CO2 mineralization cell based on organic proton-coupled electron transfer, Applied Energy, 2020, 261, 114414. [18] Heping Xie*, Shuo Zhai, Bin Chen, Tao Liu, Yuan Zhang, Meng Ni, Zong pingShao, Coal pretreatment and Ag-infiltrated anode for high-performance hybrid direct coal fuel cell, Applied Energy, 2020, 260, 114197. [19] Heping Xie*, Yifan Wu, Tao Liu, Fuhuan Wang, Bin Chen, Bin Liang, Low-energy-consumption electrochemical CO2 capture driven by biomimetic phenazine derivatives redox medium[J]. Applied Energy, 2020, 259, 114119. [20] Shuo Zhai, Heping Xie*, Bin Chen, Meng Ni, A rational design of FeNi alloy nanoparticles and carbonate-decorated perovskite as a highly active and coke-resistant anode for solid oxide fuel cells, Chemical Engineering Journal, 2022, 430, 132615. |