论文著作:
1.Xin Guo; Xiaokun Wang; Xiushuai Guan; Jiuyang Li; Changming Zhang; Yadong Bai; Xiaochao Zhang*. In situ fabrication of 2D Bi/Bi2O2CO3 nanosheets anchored on Bi substrate for highly-efficient photoelectrocatalytic CO2 reduction to formate[J]. Applied Surface Science, 2024, 664: 160216.
2.Xiya Zhao; Zhiyu Li; Xiaochao Zhang*; Xiushuai Guan; Changming Zhang; Puqian Tian; Huiqiang Yue; Liyuan Wang; Yadong Bai; Yawen Wang; Song Yang; Caimei Fan. In situ preparation of Mo: BiVO4 photoanodes coupled with BiOBr cathode for efficient photoelectrocatalytic CO2 reduction performance[J]. Sol. RRL, 2024, 2301070: 1-9.
3. Zhengfeng Shen; Feifei Li; Lijun Guo; Xiaochao Zhang; Yawen Wang; Yunfang Wang; Xuan Jian; Xiaoming Gao; Zhongde Wang; Rui Li; Caimei Fan; Jianxin Liu. Ligand bridged MXene/metal organic frameworks heterojunction for efficient photocatalytic ammonia synthesis[J]. Applied Catalysis B: Environment and Energy, 2024, 346: 123732.
4. Yuan Wang; Guomin Xu; Chao Xue; Changming Zhang; Jinbo Xue; Xiaochao Zhang*. Self-nitrogen-doped hierarchical porous carbon spheres as metal-free catalyst for efficient photocatalytic CO2 reduction[J]. Separation and Purification Technology, 2024: 127008.
5. Xiushuai Guan; Shanbiao Jin; Le Liu; Xiya Zhao; Xiaochao Zhang*; Changming Zhang; Zhong Li; Caimei Fan Surface engineering of CexBi1 xO2 δ nanorods rich in oxygen vacancies for enhancing photo-thermal synthesis of dimethyl carbonate from CO2/CH3OH[J]. Fuel, 2024, 358: 130215.
6. Changming Zhang; Yuan Wang; Xiaochao Zhang; Zhiyan Dong; Wensheng Wu; Caimei Fan. Self-nitrogen-doped carbon spheres assisted CeO2 composites as a bifunctional adsorbent/photocatalyst for CO2 photoreduction[J]. Fuel, 2024, 362: 130848.
7. Qing Xi; Fangxia Xie; Zijun Sun; Jianxin Liu; Xiaochao Zhang; Yawen Wang; Aijuan Zhou; Xiaoli Ma; Xiaoming Gao; Xiuping Yue; Jun Ren; Caimei Fan; Xuan Jian; Rui Li. NiRu–Mo 2 Ti 2 C 3 O 2 as an efficient catalyst for alkaline hydrogen evolution reactions: the role of bimetallic site interactions in promoting Volmer-step kinetics[J]. Physical Chemistry Chemical Physics, 2024, 26(8): 7166-7176.
8. Jiangyong Yu; Shengqin Guan; Xiaochao Zhang; Baoen Xu; Taotao Guan; Kaixi Li; Jianlong Wang. Deep eutectic solvents based on cyclodextrin-monoethanolamine for high-efficiency carbon dioxide capture under high temperature[J]. Journal of Environmental Chemical Engineering, 2024, 12(1): 111625.
9. Xiushuai Guan; Shanbiao Jin; Le Liu; Xiya Zhao; Xiaochao Zhang*; Changming Zhan; Zhong Li; Caimei Fan. Surface engineering of CexBi1xO2δ nanorods rich in oxygen vacancies for enhancing photo-thermal synthesis of dimethyl carbonate from CO2/CH3OH[J]. Fuel, 2024, 358: 130215.
10. Shanbiao Jin; Xiushuai Guan; Xiaochao Zhang*; Changming Zhang; Jianxin Liu; Yawen Wang; Yunfang Wang; Rui Li; Zhong Li; Caimei Fan. CeO2 nanorods with bifunctional oxygen vacancies for promoting low-pressure photothermocatalytic CO2 conversion with CH3OH to dimethyl carbonate[J]. Journal of Environmental Chemical Engineering, 2023, 11(6): 111374.
11. Qing Xi; Fangxia Xie; Jianxin Liu; Xiaochao Zhang; Jiancheng Wang; Yawen Wang; Yunfang Wang; Houfen Li; Zhuobin Yu; Zijun Sun; Xuan Jian; Xiaoming Gao; Jun Ren; Caimei Fan; Rui Li. In Situ Formation ZnIn2S4/Mo2TiC2 Schottky Junction for Accelerating Photocatalytic Hydrogen Evolution Kinetics: Manipulation of Local Coordination and Electronic Structure[J]. Small, 2023: 2300717.
12. Guangmin Ren; Zixuan Wei; Zizhen Li; Xiaochao Zhang*; Xiangchao Meng. Fabrication of S-scheme hollow TiO2@ Bi2MoO6 composite for efficiently photocatalytic CO2 reduction[J]. Materials Today Chemistry, 2023, 27: 101260.
13. Lulu Zhang; Rui Li; Luyao Cui; Zijun Sun; Lijun Guo; Xiaochao Zhang; Yunfang Wang; Yawen Wang; Zhuobin Yu; Tao Lei; Xuan Jian; Xiaoming Gao; Caimei Fan; Jianxin Liu. Boosting photocatalytic ammonia synthesis performance over OVs-Rich Ru/W18O49: Insights into the roles of oxygen vacancies in enhanced hydrogen spillover effect[J]. Chemical Engineering Journal, 2023, 461: 141892.
14. Xiushuai Guan; Xiaochao Zhang* ; Changming Zhang; Rui Li; Jianxin Liu; Yunfang Wang; Yawen Wang; Caimei Fan; Zhong Li. Original self-assembled S-scheme BiOBr-(0 0 1)/Bi2SiO5/Bi heterojunction photocatalyst with rich oxygen vacancy for boosting CO2 reduction performance[J]. Journal of Colloid and Interface Science, 2023, 644: 426-436.
15. Yuzhao Wang; Fangxia Xie; Rui Li; Zhuobin Yu; Xuan Jian; Xiaoming Gao; Houfen Li; Xiao Zhang; Jianxin Liu; Xiaochao Zhang; Yawen Wang; Caimei Fan; Xiuping Yue; Aijuan Zhou. Bi3O4Br/Ti3C2 Schottky junction with enhanced active species generation for boosting visible-light photodegradation bisphenol A activity[J]. Separation and Purification Technology, 2023, 318: 124001.
发明专利:
1. 张小超;官修帅;靳山彪;郑谦;张长明;李瑞;刘建新;王韵芳;王雅文,一种核壳结构CeO2纳米微球光催化剂的制备方法及其应用,中国,ZL 202211445814.7
2. 张小超; 官修帅; 任广敏; 张长明; 李瑞; 王韵芳; 樊彩梅, 一种Bi/Bi2SiO5光催化剂的制备方法及其应用, 中国,ZL 201910891546.3
3. 张小超; 薛婷婷; 任广敏; 张长明; 李瑞; 王韵芳; 樊彩梅, 一种BiOBr/Bi12SiO20复合薄膜光催化剂的电化学制备方法及其应用, 中国,ZL 201910891326.0
4. 张长明; 张小超; 杨艳青; 宋雯; 高颖; 李瑞, 一种钒铜改性脱汞吸附材料及其制备方法及其应用, 中国,ZL 201711229198.0
5. 张小超; 李瑜; 李双志; 李瑞; 赵祖; 张长明; 王韵芳; 王雅文; 刘建新; 樊彩梅, 一种纳米片状氟化铋薄膜的电化学制备方法及其应用, 中国, ZL 201711021123.3
6. 李瑞; 张小超; 李双志; 赵祖; 张长明; 刘建新; 王韵芳; 王雅文; 樊彩梅, 一种钨酸铋光催化薄膜的电化学制备方法及其应用, 中国, ZL 201711021098.9
7. 樊彩梅; 吕瑞; 胡颖媛; 贾泽慧; 刘建新; 张小超; 李瑞; 王雅文; 王韵芳, 一种降解水中苯酚的复合光催化剂薄膜的制备方法, 中国, ZL 201711012186.2
8. 樊彩梅; 李瑞; 李双志; 谢芳霞; 王雅文; 张小超; 王韵芳, 一种Bi12O17Br2光催化剂的合成及应用方法, 中国, ZL 201611068638.4
9. 樊彩梅; 胡颖媛; 李双志; 张小超; 王雅文; 王韵芳; 丁光月, 一种复合薄膜光催化剂BiPO4/BiOCl的电化学制备及应用方法, 中国, ZL 201610176702.4
10. 张长明; 张小超; 宋雯; 张继龙; 易群; 鲁冰倩; 李瑞, 一种BiOBr/NiO@ACSs球形复合光催化剂的制备方法, 中国, ZL 201510638283.7
11. 张长明; 张小超; 宋雯; 高颖; 李瑞, 一种Co3O4@ACSs/BiOCl球形吸附-光催化复合催化剂的制备方法, 中国, ZL 201510675366.3
12. 王韵芳; 王雅文; 张雪; 樊彩梅; 丁光月; 张小超, 一种AgBr/CuO可见光光催化材料的再生方法及其应用, 中国, ZL 201410457258.4
13. 张小超; 李瑞; 张继龙; 易群; 樊彩梅, 一种水相分散型光催化剂及其制备方法和应用, 中国, ZL 201410477422.8
14. 张小超; 李瑞; 张继龙; 易群; 鲁冰倩, 一种微乳状光催化剂及其制备方法和应用, 中国, ZL 201410477445.9
15. 张继龙; 张小超; 易群; 杜朕屹; 郑华艳; 荆洁颖; 陈广建; 郑静, 一种生物柴油的生产装置及生产方法, 中国, ZL 201410261146.1
16. 张小超; 易群; 张继龙; 郭天玉; 李国旗, 一种用动植物油脂及废弃油制备煤浮选剂的方法, 中国, ZL 20116. 易群; 张小超; 张继龙; 郭天玉; 任晓霞, 一种焦化行业废弃油综合利用的方法, 中国, ZL 201310464470.9