温翠莲

发布者:
发布时间:
2026-09-15
浏览量:

教师姓名

温翠莲

学 科

材料科学与工程、

材料工程、材料学

 

联系方式

E-mail:clwen@fzu.edu.cn

科研主页:https://orcid.org/0000-0002-0410-606X

欢迎对二维纳米复合功能材料的设计与性能调控、环境友好型先进功能材料的设计感兴趣的同学加入。

个人简历

2026.09~至今  福州大学材料科学与工程学院  教授/博士生导师

2025.08~2026.07  英国巴斯大学化学系  访问学者

2015.06~2026.09  福州大学材料科学与工程学院   副教授

2011.10~2015.06   福州大学材料科学与工程学院   讲师

2008.10~2011.09  日本静冈大学 光.纳米物质机能  工学博士

2005.09~2008.06  郑州大学  材料加工工程  工学硕士

2001.09~2005.06  郑州大学  材料成型及控制工程/工商管理  双学士学位

社会兼职

国家自然科学基金通讯评审专家;

中国热处理学会会员、福建省金属学会会员;

担任Advanced Materials、Advanced Functional Materials、Chemical Engineering Journal、Journal of the European Ceramic Society、Ceramics International、Journal of Materials Science and Technology等国内外SCI期刊审稿人。

荣誉称号

福建省高层次C类人才、福建省水利科学技术奖三等奖、

福州大学材料学院先进科技工作者、福州大学“最佳一节课” 二等奖;

教学情况

讲授《材料科学与工程基础》、《材料科学基础》、《弹性与塑性力学基础》等课程;主持教改项目3项;

获得福州大学教学优秀奖二等奖2次;福州大学教学成果奖二等奖1次;福州大学青年教师“最佳一节课”二等奖;中国大学生材料热处理大赛优秀指导教师;

指导多项本科生国家级与省级创新创业项目,指导学生在中国大学生材料知识技能大赛中多次获奖;通过Sakura科学项目,两次带研究生和本科生赴日本高校进行学术交流;共同举办相关在线国际交流会议。

研究领域

(1)二维纳米复合功能材料的设计与性能调控;

(2)新型生物复合材料的制备及生物医用研究;

(3)环境友好型先进功能材料的设计(水处理、光电、光热转换材料等)

科研项目

(1)国家自然科学基金面上项目,多元过渡金属d轨道协同表面官能团调控高熵MXene光转换性能机制研究,2026-2029,主持

(2)国家科技重大专项子课题,高端无机非金属材料自主计算设计技术平台构建,2025-2028,主持

(3)福建省自然科学基金面上项目,静电势差与电声耦合调控电子化合物的电子结构与超导性质机制研究,2024-2027,主持

(4)国家重点研发计划重点项目课题子课题,新型光电/光热气材料跨尺度计算与构效关系,2022-2025,参与

(4)福建省自然科学基金面上项目,新型稀土金属基电子化合物的结构设计与电子输运性质研究,2020-2023,主持

(5)福建省自然科学基金面上项目,Si/Mg2Si/Ca2Si薄膜的结构设计、制备和热电性能研究,2016-2019,主持

(6)福建省水利水电科学研究院,改性细菌纤维素复合材料性能测试及性能改进技术分析,2022-2025,主持

(7)福州瑞克布朗医药科技有限公司,生物活性玻璃颗粒的开发,2022-2023,主持

论著成果

以第一/通讯作者在Adv. Mater., Adv. Funct. Mater.、Chem. Eng. J.等高水平期刊发表论文70余篇,作为第一发明人授权发明专利18件。

部分代表论文:

[1] Chenyu Wang, Zhiqiang You, Jianhui Chen, Yongchuan Liu, Cuilian Wen*, Hengyi Li, Yuanqiang Chen, Chang-Feng Zhu, Baisheng Sa, Xiangxin Zhang, Entropy-driven electrolyte design for lithium metal batteries: achieving interfacial stability with fluorinated fullerene nanoparticles, Advanced Materials, 2026, 0: e74227.

[2] Siqing Yan, Qian Ma, Cuilian Wen*, Lijin Luo, Junhao Jin, Xiong Li, Yuanxing Fang, Baisheng Sa*, Enhanced biological behavior and photothermal antibacterial performance of TiNbCTx MXene modified mesoporous bioactive glass nanocomposites, Advanced Functional Materials, 2025, 2419993.

[3] Cuilian Wen, Xiong Li, Siqing Yan, Jiansen Wen, Rongtao Zheng, Xinyi, Wang, Haonan Zhao, Jian Zhou, Baisheng Sa*, Zhimei Sun*, Progress in MXene-based photothermal materials for solar-driven water evaporation and desalination, Chemical Engineering Journal, 2025, 510, 161873.

[4] Xinyi Wang, Rongtao Zheng, Cuilian Wen*, Lijin Luo, Jiansen Wen, Haonan Zhao, Rui Xiong, Frank Marken, Yin Yuan*, Baisheng Sa*, Engineered MBene-integrated anisotropic aerogel with synergistic hydrogen-bond network and superior photothermal conversion for efficient solar-driven desalination and purification, Desalination, 2026, 629: 120135.

[5] Rongtao Zheng, Xinyi Wang, Cuilian Wen*, Zhou Cui, Haonan Zhao, Lijin Luo, Yanhan Wang, Jianwei Zhang, Yin Yuan, Baisheng Sa*, Broad interband transitions in high-entropy MXene enable anisotropic aerogels with synergistic photothermal conversion and water transport in solar desalination, Chemical Engineering Journal, 2026, 541: 177321.

[6] Xiong Li, Haonan Zhao, Jie Shen, Cuilian Wen*, Lijin Luo, Xinyi Wang, Rongtao Zheng, Su Huang, Cong Lin, Baisheng Sa*, Self-assembly hierarchical MXene/bacterial cellulose composite films with accelerated surface charge transfer for highly efficient solar-driven water evaporation, Separation and Purification Technology, 2026, 382: 135886.

[7] Yuanyuan Xu, Zhiyuan Zhang, Zhou Cui, Lijin Luo, Peng Lin, Maojie Xie, Qiying Zhang, Baisheng Sa∗, Cuilian Wen∗, Enhanced interfacial interactions and enriched active sites in self-assembly amino-functionalized bacterial cellulose/MXene composite for wastewater treatment, Chemical Engineering Journal, 2024, 488, 151078.

[8] Cuilian Wen∗, Qiugang Liao, Zhou Cui, Ziqiang Chen, Hao Liu, Rui Xiong, Baisheng Sa∗. Exfoliation behavior and superior photothermal conversion performance of MXenes beyond Ti3C2Tx, Chemical Engineering Journal, 2023, 472, 144921.

[9] Maria V. Pagliaro, Cuilian Wen∗, Baisheng Sa, Baoyu Liu, Marco Bellini, Francesco Bartoli, Sanjubala Sahoo, Ramesh K. Singh, S. Pamir Alpay∗, Hamish A. Miller∗, Dario R. Dekel. Improving alkaline hydrogen oxidation activity of palladium through interactions with transition-metal oxides, ACS Catalysis, 2022, 12 (17), 10894-10904.

[10] Kun Rong, Cuilian Wen*, Jiansen Wen, Xiong Li, Qiugang Liao, Siqing Yan, Chao Xu, Xiaoliang Zhang*, Baisheng Sa*, Zhimei Sun*, Hierarchical MoS2/Ti3C2Tx heterostructure with excellent photothermal conversion performance for solar-driven vapor generation, Acta Physico-Chimica Sinica, 2025, 41, 100053.

[11] Hao Liu, Zhou Cui, Lijin Luo, Qiugang Liao, Rui Xiong, Chao Xu, Cuilian Wen∗, Baisheng Sa∗. Facile fabrication of flexible and ultrathin self-assembled Ti3C2Tx /bacterial cellulose composite films with multifunctional electromagnetic shielding and photothermal conversion performances, Chemical Engineering Journal, 2023, 454, 140288.

[12] Baoyu Liu, Ziqiang Chen, Rui Xiong, Xuhui Yang, Yinggan Zhang, Teng Xie, Cuilian Wen∗, Baisheng Sa∗. Enhancing hydrogen evolution reaction performance of transition metal doped two-dimensional electride Ca2N, Chinese Chemical Letters, 2023, 34 (6), 107643.

[13] Cuilian Wen, Maojie Xie, Siqing Yan, Qianqian Chen, Junhao Jin, Teng Xie, Wei Zhu, Zhongzhi Tang∗, Kai Luo∗, Baisheng Sa∗, Effects of B2O3 on the structural evolution and biological behavior of borate bioactive glasses by sol-gel and melting methods, Ceramics International, 2024, 50, 47864-47875.

[14] Cuilian Wen∗, Hao Liu∗, Lijin Luo, Zhou Cui, Xiong Li, Junhao Jin, Siqing Yan, Peng Lin, Baisheng Sa∗, Ultrathin and flexible PDA modified MXene/bacterial cellulose composite film with a dense lamellar structure for enhanced electromagnetic interference shielding performance, Journal of Materials Chemistry C, 2024, 12, 17037.

[15] Qiugang Liao, Hao Liu, Ziqiang Chen, Yinggan Zhang, Rui Xiong, Zhou Cui, Cuilian Wen∗, Baisheng Sa∗. Flexible and ultrathin dopamine modified MXene and cellulose nanofiber composite films with alternating multilayer structure for superior electromagnetic interference shielding performance, Frontiers of Physics, 2023, 18 (3), 33300.

[16] Cuilia Wen∗, Jiamin Qian, Long Xiao, Lijin Luo, Junrong Zheng, Maojie Xie, Jing Tao, Xiaohong Wu, Baisheng Sa∗, Kai Luo∗. Enhanced biological behavior and antibacterial property of WS2 nanosheets modified mesoporous bioactive glass nanospheres for bone tissue engineering, Ceramics International, 2022, 48, 33781-33793.

[17] Cuilian Wen∗, Nuonan Bai, Lijin Luo∗, Jianxia Ye, Xuan Zhan, Yinggan Zhang, Baisheng Sa∗. Structural behavior and in vitro bioactivity evaluation of hydroxyapatite-like bioactive glass based on the SiO2-CaO-P2O5 system, Ceramics International, 2021, 47 (13), 18094-18104.

[18] Cuilian Wen, Zhiyuan Zhang, Zhonglu Guo, Jinni Shen, Baisheng Sa, Peng Lin, Jian Zhou and Zhimei Sun. Two-dimensional O-phase group III monochalcogenides for photocatalytic water splitting. Journal of Physics Condensed Matter, 2020, 32, 065501.

[19] Zengyan Li, Bing Peng, Teng Zhang, Hengyi Li, Lingyun Li, Cuilian Wen*, Kongfa Chen*, Improving sealing performance of borosilicate glass-ceramics for solid oxide fuel cell applications: Effect of AlN, Journal of the European Ceramic Society, 2019, 39: 4194-4201.

[20] Xiaogui Huang, Xiaozhang Zhan, Cuilian Wen*, Feng Xu*, Lijin Luo, Amino-functionalized magnetic bacterial cellulose/activated carbon composite for Pb2+ and methyl orange sorption from aqueous solution, Journal of Materials Science & Technology, 2018, 34(5): 855-863.

发明专利

以第一发明人获得授权国家发明专利18项,部分授权专利如下:

[1] 一种TAT多肽修饰的MXene/氨基化细菌纤维素电磁屏蔽复合材料及其制备方法. 中国发明专利. 专利号: ZL202211003472.3

[2] 一种WS2纳米片生物玻璃微球复合材料及其制备方法. 中国发明专利. 专利号: ZL202110679363.2

[3] 一种钴镍氧化物共掺杂的Pd基燃料电池催化剂及其制备方法. 中国发明专利. 专利号:ZL202010067047.5

[4] 一种花瓣状微球二硫化钼复合碳材料负载Pd金属催化剂及其制备方法. 中国发明专利. 专利号: ZL202010064987.9

[5] 一种高生物活性MXene生物玻璃微球复合材料的制备方法. 中国发明专利. 专利号: ZL202110677667.5

[6] 一种还原氧化石墨烯生物玻璃纳米纤维支架的制备方法. 中国发明专利. 专利号: ZL201810287070.8

[7] 一种磁性自愈性生物玻璃/水凝胶复合材料的制备方法. 中国发明专利. 专利号: ZL201810384018.4

[8] 一种抗菌性生物活性玻璃纳米纤维支架及其制备方法. 中国发明专利. 专利号: ZL201810293401.9

[9] 一种氧化锆-硅藻土复合负载燃料电池催化剂的制备方法,中国发明专利,专利号: ZL2017104580724

[10] 一种Ge掺杂Mg2Si基热电薄膜及其制备方法. 中国发明专利, 专利号: ZL201510704624.6