姓名:廖婉茹
性别:女
学历学位:研究生/博士
职称:讲师
系室:应用化学系
QQ:1065480074
电子邮箱:wrliao1994@163.com

研究方向
电催化合成氨及其回收、电催化水分解,主要包括催化活性位点与表界面微环境调控、反应机制探究。
教育背景
2016.09-2021.12 福州大学 工业催化 工学博士(导师:梁诗景)
2012.09-2016.06 福建理工大学 环境工程 工学学士
工作经历
2024.07-至今 新利官网开户 化学与医药工程学院 讲师
2022.04-2024.06 中南大学 物理学流动站 博士后(导师:刘敏)
近五年学术论文
[1] Liao, W.; Wang, J.; Ni, G.; Liu, K.; Liu, C.; Chen, S.; Wang, Q.; Chen, Y.; Luo, T.; Wang, X.; Wang, Y.; Li, W.; Chan, T.-S.; Ma, C.; Li, H.; Liang, Y.; Liu, W.; Fu, J.; Xi, B.; Liu, M., Sustainable conversion of alkaline nitrate to ammonia at activities greater than 2 A cm-2, Nat. Commun. 2024, 15, 1264.
[2] Wang, J.#; Liu, K. #; Liao, W.#; Kang. Y.; Xiao H.; Chen Y.; Wang Q.; Luo T.; Chen J.; Li H.; Chan T.; Chen S.; Pensa E.; Chai L.; Liu F.; Jiang L.; Liu C.; Fu J.; Cortés E.; Liu M., Metal vacancies in semiconductor oxides enhance hole mobility for efficient photoelectrochemical water splitting. Nat. Catal. 2024, accept.
[3] Wang, J.; Ni, G.; Liao, W.; Liu, K.; Chen, J.; Liu, F.; Zhang, Z.; Jia, M.; Li, J.; Fu, J.; Pensa, E.; Jiang, L.; Bian, Z.; Cortes, E.; Liu, M., Subsurface Engineering Induced Fermi Level De-pinning in Metal Oxide Semiconductors for Photoelectrochemical Water Splitting. Angew. Chem. Int. Ed. 2023, 62, e202217026.
[4] Wang, Q.; Dai, M.; Li, H.; Lu, Y. R.; Chan, T. S.; Ma, C.; Liu, K.; Fu, J.; Liao, W.; Chen, S.; Pensa, E.; Wang, Y.; Zhang, S.; Sun, Y.; Cortes, E.; Liu, M., Asymmetric coordination induces electron localization at Ca sites for robust CO2 electroreduction to CO. Adv. Mater. 2023, e2300695.
[5] Liu, M.; Wang, Q.; Luo, T.; Herran, M.; Cao, X.; Liao, W.; Zhu, L.; Li, H.; Stefancu, A.; Lu, Y.-R.; Chan, T.-S.; Pensa, E.; Ma, C.; Zhang, S.; Xiao, R.; Cortés, E., Potential alignment in tandem catalysts enhances CO2-to-C2H4 conversion efficiencies. J. Am. Chem. Soc. 2024, 146, 468-475.
[6] Liao, W.; Liu, K.; Wang, J.; Stefancu, A.; Chen, Q.; Wu, K.; Zhou, Y.; Li, H.; Mei, L.; Li, M.; Fu, J.; Miyauchi, M.; Cortés, E.; Liu, M., Boosting nitrogen activation via Ag nanoneedle arrays for efficient ammonia synthesis. ACS Nano 2023, 17, 411-420.
[7] Liao, W.; Qi, L.; Wang, Y.; Qin, J.; Liu, G.; Liang, S.; He, H.; Jiang, L., Interfacial Engineering Promoting Electrosynthesis of Ammonia over Mo/Phosphotungstic Acid with High Performance. Adv. Funct. Mater. 2021, 31, 2009151.
[8] Liao, W.; Xie, K.; Liu, L.; Wang, X.; Luo, Y.; Liang, S.; Liu, F.; Jiang, L., Triggering in-plane defect cluster on MoS2 for accelerated dinitrogen electroreduction to ammonia. J. Energy Chem. 2021, 62, 359-366.
[9] Liao, W.; Liu, H.-X.; Qi, L.; Liang, S.; Luo, Y.; Liu, F.; Wang, X.; Chang, C.-R.; Zhang, J.; Jiang, L., Lithium/bismuth co-functionalized phosphotungstic acid catalyst for promoting dinitrogen electroreduction with high Faradaic efficiency. Cell Rep. Phys. Sci. 2021, 2, 100557.
[10] Liao, W.; Chen, W.; Lu, S.; Zhu, S.; Xia, Y.; Qi, L.; Yang, M. Q.; Liang, S., Alkaline Co(OH)2-decorated 2D monolayer titanic acid nanosheets for enhanced photocatalytic syngas production from CO2. ACS Appl. Mater. Interfaces 2021, 13, 38239-38247.
[11] Liao, W.; Lu, S.; Chen, W.; Zhu, S.; Xia, Y.; Yang, M.-Q.; Liang, S., Rationally designed ultrathin Ni(OH)2/titanate nanosheet heterostructure for photocatalytic CO2 reduction. Green Chem. Eng. 2022, 3, 240-249.
[12] Lu, S.; Liao, W.#; Chen, W.; Yang, M.-Q.; Zhu, S.; Liang, S., Elemental sulfur supported on ultrathin titanic acid nanosheets for photocatalytic reduction of CO2 to CH4. Appl. Surf. Sci. 2023, 614, 156224.
科研项目
[1] 中国博士后特别资助(站中), 2023T160735, 2023.03-2024.06, 18万元, 结题, 主持;
[2] 中国博士后面上项目, 2022M723547, 2022.08-2024.06, 8万元, 结题, 主持;
[3] 湖南省自然科学基金青年项目, 2025JJ60117, 2025.01-2027.12, 5万元, 在研, 主持。
发明专利
[1] 梁诗景; 廖婉茹; 刘福建; 江莉龙; 曹彦宁; 郑勇; 一种超疏水负载钼的催化剂及其制备方法与应用, 2022-02-22, 中国, ZL202110275505.9 (已授权)
[2] 梁诗景; 廖婉茹; 江莉龙; 曹彦宁; 刘福建; 一种具有面内缺陷的钼基催化剂及其制备方法与应用, 2022-05-17, 中国, ZL202110313344.8 (已授权)
[3] 梁诗景; 廖婉茹; 刘福建; 江莉龙; 罗宇; 曹彦宁; 一种超疏水性的钼基催化剂的制备方法及其应用, 2022-05-13, 中国, ZL202110315166.2 (已授权)
[4] 梁诗景; 廖婉茹; 江莉龙; 彭小波; 一种介孔炭球包裹的锆负载型催化剂的制备方法及其应用, 2023-11-17, 中国, ZL202210333046.X (已授权)
[5] 梁诗景; 廖婉茹; 江莉龙; 彭小波; 一种疏水性的锆负载型电催化剂的制备方法与应用, 2024-3-12, 中国, ZL202210333023.9 (已授权)