科研论文
[1] 王少奇1,2;赵朋1,2;沈伯雄1,2;王欣然1,2. 飞絮衍生碳及其复合材料用于超级电容器研究进展. 应用化工, 2022, 51 9, 2791-2797.
[2] 赵忠1;杜欢2;沈伯雄1;高培1;黄超1. 废旧电池制备催化剂处理VOCs的研究进展. 化工环保, 2022, 42 5, 532-536.
[3] 王博1;沈伯雄1,2;郭秉楠3;封硕1;石其其1. SCR脱硝过程中SO_3形成影响因素、控制方法及检测技术研究进展. 应用化工, 2022, 51 8, 2373-2379,2385.
[4] Zhen Mengmeng1;Jiang Keliang2;Guo Shengqi1;Shen Boxiong1;Liu Huiling2. Suitable lithium polysulfides diffusion and adsorption on CNTs@TiO_2-bronze nanosheets surface for high-performance lithium-sulfur batteries. Nano Research, 2022, 15 2, 933-941.
[5] Ma, Xiaojia1;Tang, Xuejing1;Hu, Zhenzhong1;Zhen, Mengmeng1;Shen, Boxiong1;Guo, Shengqi1;Dong, Fan2;. Oxygen vacancies assist a facet effect to modulate the microstructure of TiO2 for efficient photocatalytic O2 activation. Nanoscale, 2022, , .
[6] Wang, Xin1;Yang, Shuo1;Shen, Boxiong2;Yang, Jiancheng1;Xu, Lianfei1;. Pyrolysis of Biomass Pineapple Residue and Banana Pseudo-Stem: Kinetics, Mechanism and Valorization of Bio-Char. CATALYSTS, 2022, 12 8, .
[7] Ma, Xiaojia1;Tang, Xuejing1;Hu, Zhenzhong1;Zhen, Mengmeng1;Shen, Boxiong1;Guo, Sheng-Qi1;Dong, Fan2;. Oxygen vacancies assist a facet effect to modulate the microstructure of TiO2 for efficient photocatalytic O-2 activation. NANOSCALE, 2022, , .
[8] Cheng, Zi;Lyu, Honghong;Shen, Boxiong;Tian, Jingya;Sun, Yanfang;Wu, Chunfei. Removal of antimonite (Sb(III)) from aqueous solution using a magnetic iron-modified carbon nanotubes (CNTs) composite: Experimental observations and governing mechanisms. Chemosphere, 2022, 288 , .
[9] Jiancheng Yang1,2;
CA 1 ;Mingtao Yang3,1;Xiaori Liu1;Mingkai Zhang1;Mengkai Gao1;Long Chen1;Jiachun Su1;Yuan Huang1;Yiqing Zhang1;Boxiong Shen3,1,2;CA 2 . Electronic structures and quantum capacitance of single-walled carbon nanotubes doped by 3d transition-metals: A first principles study. Electrochimica Acta, 2022, 439 , 141666.[10] Zhang, Lei;Wang, Zhuozhi;Ma, Jiao;Kong, Wenwen;Yuan, Peng;Sun, Rui;Shen, Boxiong. Analysis of functionality distribution and microstructural characteristics of upgraded rice husk after undergoing non-oxidative and oxidative torrefaction. Fuel, 2022, 310 , .