论文著作:
(1) Biyi Chen; Dan Li; Xue Chen; Longhua Li; Min Chen; Weidong Shi*; Efficient and controllable flame method to generate rich oxygen vacancies in WO3 nanosheet arrays to enhance solar water oxidation, Applied Physics Letters, 2022, 120(25): 253901
(2) Biyi Chen; Dan Li; Xiaojie Wu; Shuang Deng; Longhua Li; Weidong Shi*; Ultrathin black phosphorus as pivotal hole extraction layer and oxidation evolution co-catalyst boosting solar water oxidation, Inorganic Chemistry Frontiers, 2022, 9(12): 2938-2944.
(3) Biyi Chen; Dan Li; Zhidong Yang; Qi Li; Xue Chen; Longhua Li; Weidong Shi*; Ultra-efficient post-treatment flame method to introduce abundant oxygen vacancies in BiVO4 photoanode toward solar water splitting, Chemical Engineering Science, 2022, 251: 117433.
(4) Baoxin Ge, Biyi Chen, Longhua Li*. Ternary transition metal chalcogenides Ti2PX2 (X= S, Se, Te) anodes for high performance metal-ion batteries: A DFT study[J]. Applied Surface Science, 2021, 550: 149177.
(5) Biyi Chen; Baoxin Ge; Shimeng Fu; Qi Li; Xue Chen; Longhua Li; Jian Wang; Zhidong Yang; Jinrui Ding; Weiqiang Fan; Baodong Mao; Weidong Shi*; Ex-situ flame co-doping of tin and tungsten ions in TiO2 nanorod arrays for synergistic promotion of solar water splitting, Chemical Engineering Science, 2020, 226: 115843.
(6) Biyi Chen; Xue Chen; Li Ruoyuan; Weiqiang Fan; Fagen Wang; Baodong Mao; Weidong Shi*; Flame reduced TiO2 nanorod arrays with ag nanoparticle decoration for efficient solar water splitting, Industrial & Engineering Chemistry Research, 2019, 58(12): 4818-4827.
(7) Biyi Chen, Weiqiang Fan, Baodong Mao, Hao Shen, Weidong Shi*. Enhanced photoelectrochemical water oxidation performance of a hematite photoanode by decorating with Au–Pt core-shell nanoparticles. Dalton Transactions, 2017, 46(46): 16050-16057.
发明专利:
1. 施伟东, 陈必义, 徐东波, 夏腾, 罗必富. 一种复合光电极的制备方法: ZL201710879432.8.
2. 施伟东, 徐东波, 陈必义, 延旭, 李春发, 陈超. 一种制备等离子体复合光催化剂的方法: ZL201510735200.6.
3. 施伟东, 徐东波, 罗必富, 陈必义, 胥超. 一种制备三维钽酸钡花形微球的方法: ZL201510513395.X.
4. 施伟东, 杨松波, 徐东波, 罗必富, 陈必义. 一种制备PN异质结复合光催化剂的方法: ZL201510692107.1.