洒荣建

发布时间:2023-05-06浏览次数:2291


个人简介

洒荣建男,博士,副研究员,硕士生导师。近5年以第一(共同)作者&通讯(共同)作者发表相关SCI论文70余篇,包括J. Am. Chem. Soc、ACS. Catalysis、Appl. Catal.B Environ、Chem. Eng. J、Nano. Energy、J. Catal、ChemsusChem、Nanoscale等专业领域有影响力杂志发表多篇高质量研究论文,论文被引用超过7000次,H-index指数为43,先后有6篇论文入选ESI前1%高被引论文,入围2023年度和2024年度全球前2%顶尖科学家榜单。2009年荣获中国科学院卢嘉锡青年人才奖,2011年获批中国科学院青年创新促进会会员,2022年获批福建省高层次人才C类人才。

邮箱:rjsa@mju.edu.cn

研究方向:能源与环境催化材料设计

教育经历

1995.09-1999.07  山东曲阜师范大学,本科;

1999.09-2002.07  中国科学院福建物质结构研究所,理学硕士

2002.09-2005.07  中国科学院上海药物研究所,理学博士

2005.09-2008.12  中国科学院福建物质结构研究所,博士后

2008.12-2018.04  中国科学院福建物质结构研究所,副研究员

2018.04-至今    7003全讯论坛副研究员

主要参与的项目

1.国家自然科学基金青年项目,以尿激酶及其受体为靶标的抗肿瘤先导化合物的设计与优化,项目编号81001403,主持。

2.福建省自然科学基金面上项目,环境友好二维有机-无机杂化钙钛矿光伏材料设计,项目编号2020J01858,主持。

3.企业横向项目,催化计算方法和数据处理技术的开发,主持

4.福州市创新人才培育计划,高性能色谱填料和生物医药高效分离纯化介质的制备及应用,主持

5.能源与环境光催化国家重点实验室开放课题,基于共价有机框架单活性位点催化材料设计及光催化氮气合成氨机理研究,主持

6.结构化学国家重点实验室开放课题,基于共价有机框架单活性位点光催化氮气合成氨材料设计及调控,主持

7.发树基金会研究项目,共价有机框架负载金属簇光催化氮气合成氨材料设计与调控,主持


主要参与的项

1. Guoning Feng, Yujie Sun, Ling Ren, Zehui Fang, Xin Chen, Rongjian Sa*, Qiaohong Li, Chenghua Sun, Zuju Ma*, Engineering highly selective NO3RR electrocatalysts: Integrating 2D materials with Nb-doped TiN for sustainable ammonia synthesis. Separation and Purification Technology, 325, 2025, 131524

2. Meiyan Chen, Qingyu Li, Xinyue Xu, Diwen Liu*, Zuju Ma*, Yanxia Li, Yanjie Zhang, Dejing Li, Qiang Chen, Rongjian Sa*, Engineering single-atom catalysts on triazine-based covalent organic frameworks for enhanced photocatalytic performance in N2 reduction, Chem. Engin. J., 494, 2024, 1531331区)

3. Qingyu Li, Weiguo Li, Diwen Liu*, Zuju Ma, Yuansong Ye, Yanjie Zhang, Qiang Chen*, Zhibing Cheng, Yiting Chen, Rongjian Sa*, Advancing electrochemical nitrogen reduction: Efficacy of two-dimensional SiP layered structures with single-atom transition metal catalysts, Journal of Colloid and Interface Science, 668, 2024, 399-411 (1)

4. Huanhuan Zhai, Pengfei Tan*, Min Jiang, Mingyuan Zhang, Ruifeng Ren, Rongjian Sa*, Jun Pan*. Electronic Regulation of Pt Single-Atom Catalysts via Local Coordination State Adjustment for Enhanced Photocatalytic Performance. ACS Catalysis. 2023, 13, 8063-8072.1区,ESI高被引)

5. Xiahong Xua, Hong Zhong*, Wei Huanga, Yan Suia, Rongjian Sa*, Wentong Chen, Gangyong Zhou, Xiaodan Li, Duofu Li, Meicheng Wen, Bo Jiang*. The construction of conjugated organic polymers containing phenanthrenequinone redox centers for visible-light-driven H2O2 production from H2O and O2 without any additives Chem. Eng. J. 454.1. 2023, 139929. 1区)

6. Hao Luo, Tianshang Shan, Jianwen Zhou, Liulian Huang, Lihui Chen, Rongjian Sa*, Yusuke Yamauchi*, Jungmok You, Yusuke Asakura, Zhanhui Yuan*, He Xiao*, Controlled synthesis of hollow carbon ring incorporated g-C3N4 tubes for boosting photocatalytic H2O2 production. Applied Catalysis B: Environmental 2023, 122933.1ESI高被引)

7. Huanhuan Zhai, Pengfei Tan*, Min Jiang, Mingyuan Zhang, Ruifeng Ren, Rongjian Sa*, Jun Pan*. Tuning charge transfer between size-controlled Pt cluster and N vacancy engineered ultrathin g-C3N4 for efficient photocatalytic hydrogen evolution. Ceramics International. 2023. 49 (22), 36857-36865.1区)

8. Haowei Lv, Pengyue Li, Xiaoju Li, Aicheng Chen, Rongjian Sa*, Hu Zhu*, Ruihu Wang*. Boosting photocatalytic reduction of the diluted CO2 over covalent organic framework. Chem. Eng. J. 2023, 451,2, 138745. 1区)

9. Liu. D, H. Zeng, Rongjian Sa*, First-principles calculations to investigate structure and fundamental physical properties of BaM2As2 (M = Mg, Zn, Cd) and their alloys, J. Mater. Res. Technol., 2023, 23, 3284-3293. (1)

10. Rongjian Sa.; Diwen Liu*, Unveiling the fundamental physical properties of Cu2-xNaxZnSnX4 (X= S, Se) alloys for solar cell applications: a theoretical investigation. Journal of materials research and technology 202220, 2680-2688. 1区)

11. Wenying Zha, Diwenliu, Zuju Ma, Yizhang Wang, Yingcong Wei, Xiongfeng Ma, Lele Wang, Rusheng Yuan*, Xianzhi Fu, Rongjian Sa*. Efficient electrochemical CO2 reduction on C2N monolayer supported transition metals trimer catalysts: A DFT study. Appl. Surf. Sci., 2021, 564, 150331. 1区)

12. Ma, Z. J.; Xiao, C. W.; Cui, Z. T.; Du, W.; Li, Q. H.; Sa, R. J.*; Sun, C. H.*, Defective Fe3GeTe2 monolayer as a promising electrocatalyst for spontaneous nitrogen reduction reaction. J Mater Chem A 2021, 9 (11), 6945-6954. 1区)

13. Wanfu Zhong#, Rongjian Sa#(共一), Liuyi Li*, Yajun He, Lingyun Li, Jinhong Bi, Zanyong Zhuang, Yan Yu*, Zhigang Zou*, A Covalent Organic Framework Bearing Single Ni Sites as a Synergistic Photocatalyst for Selective Photoreduction of CO2 to CO. J. Am. Chem. Soc. 2019, 141, 7615−7621. ESI高被引,他引600次, 1区)

14. Xiangying Lv, Xiaotian Zhang, Rongjian Sa*, Fang Huang Gang Lu*. Computational exploration of substrate and ligand effects in nickel-catalyzed C–Si bond carboxylation with CO2. Org. Chem. Front. 2019, 6, 3629–3635.1

15. Zuju Ma*, Zhitao Cui, Chengwei Xiao, Wen Dai, Yao Hui Lv, Qiaohong Li, Rongjian Sa*. Theoretical Screening of Efficient Single‐Atom Catalysts for Nitrogen Fixation Based on Defective BN monolayer. Nanoscale, 2020, 12, 1541-1550. (他引121次, 1

16. Hong Zhong, Jinwei Gao, Rongjian Sa*, Shuailong Yang, Zhicheng Wu, Ruihu Wang*, Carbon dioxide conversion upgraded by host-guest cooperation between nitrogen-rich covalent organic framework and imidazolium-based ionic polymer. ChemSusChem 2020, 13, 6323-6329.(1区,封面论文)

17. Lei Zou, Rongjian Sa*, Haowei Lv, Hong Zhong, Ruihu Wang*, Recent advances on metalloporphyrin-based materials for visible-light-driven CO2 reduction. ChemSusChem 2020, 13, 6124-6140.1

18. Lele Wang, Ming Liu, Wenying Zha, Yingcong Wei, Xiongfeng Ma, Chunwang Xu, Chenggang Lu, Nanfang Qin, Li Gao, Wenzhao Qiu, Rongjian Sa*, Xianzhi Fu, Rusheng Yuan*, Mechanistic study of visible light-driven CdS or g-C3N4-catalyzed C-H direct trifluoromethylation of (hetero)arenes using CF3SO2Na as the trifluoromethyl source. J. Catal, 389, 2020, 533-543. 1

19. Baitong Liu, Enping Liu, Rongjian Sa,* Tianfu Liu*, Crystalline hydrogen-bonded organic chains achieving ultralong phosphorescence via Triplet–Triplet energy transfer. Adv. Optical Mater. 2020, 8,12, 20002811区)