郑文姬
个人信息Personal Information
教授
博士生导师
硕士生导师
性别:女
毕业院校:大连理工大学
学位:博士
所在单位:化工海洋与生命学院
办公地点:D01-217
联系方式:0427-2631803
电子邮箱:zhengwenji@dlut.edu.cn
扫描关注
- [1]Na, Tiancheng, 刘洋, 李祥村, 郑文姬, Dai, Yan, Yan, Zhijun, Kou, Wei, 贺高红.Electrocatalytic polysulfide transformation for suppressing the shuttle effect of Li-S batterie...[J],APPLIED SURFACE SCIENCE,2022,528
- [2]郑文姬, 李祥村, Dong, Chunxu, 焉晓明, 贺高红.Fabrication of a visible light detector based on a coaxial polypyrrole/TiO2 nanorod heterojunct...[J],RSC Advances,2022,4(85):44868-44871
- [3]Hu, Lei, 贺高红, Gao, Li, Zhang, Changkun, 焉晓明, 姜晓滨, 郑文姬, 阮雪华, 吴雪梅, Yu, Guihua."Fishnet-like" ion-selective nanochannels in advanced membranes for flow batteries[J],Journal of Materials Chemistry A,2022,7(37):21112-21119
- [4]郑文姬.Functionalized MOFs based mixed matrix membranes for CO2 separation[J],ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY,2022,258
- [5]Shen, Weiming, Fan, Shuai, 李祥村, Kou, Wei, 刘洋, Dai, Yan, 郑文姬, 贺高红, Wang, Shuting, Zhang, Yue, 吴雪梅.Fe3C-doped asymmetric porous carbon membrane binder-free integrated materials as high performan...[J],CHEMICAL ENGINEERING JOURNAL,2022,368:310-320
- [6]Dai, Yan, 郑文姬, 李祥村, Chen, Bo, Wang, Le, 贺高红.Highly active catalysis-membrane system: Enhanced recyclability, durability and longevity prope...[J],CHEMICAL ENGINEERING JOURNAL,2022,293(293):252-258
- [7]郑文姬, 贺高红, 李祥村, 焉晓明.Hybrid UV photodetector with high photo-to-dark current ratio based on ordered TiO2 nanorod arr...[J],Science China Technological Sciences,2022,56(11):2642-2645
- [8]Wang, Shuting, 李祥村, Zhang, Yue, 郑文姬, Dai, Yan, 贺高红.Highly Efficient Polysulfide Trapping and Ion Transferring within a Hierarchical Porous Membran...[J],ACS APPLIED ENERGY MATERIALS,2022,3(5):5050-5057
- [9]郑文姬, Yan, Zhijun, Dai, Yan, Du, Naixu, 姜晓滨, Hailing, 李祥村, 贺高红.Interpenetrated Networks between Graphitic Carbon Infilling and Ultrafine TiO2 Nanocrystals wit...[J],ACS Applied Materials Interfaces,2022,9(24):20491-20500
- [10]黄丽莉, 安百钢, 贺高红, 李志颖, 雒洋, 张宁, 祁文旭, 姜恩, 鲍军江, 张晓鹏, 郑文姬.Low-pressure loose GO composite membrane intercalated by CNT for effective dye/salt separation[J],SEPARATION AND PURIFICATION TECHNOLOGY,2022,256:117839-
- [11]Guo, Zixing, 郑文姬, 焉晓明, Dai, Yan, 阮雪华, Yang, Xiaochen, 李祥村, 张宁, 贺高红.Ionic liquid tuning nanocage size of MOFs through a two-step adsorption/infiltration strategy f...[J],JOURNAL OF MEMBRANE SCIENCE,2022,605
- [12]焉晓明, Gao, Li, 郑文姬, 阮雪华, Zhang, Caimian, 吴雪梅, 贺高红.Long-spacer-chain imidazolium functionalized poly(ether ether ketone) as hydroxide exchange mem...[J],INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2022,41(33):14982-14990
- [13]焉晓明, 郑文姬, 阮雪华, 潘昱, 吴雪梅, 贺高红.The control and optimization of macro/micro-structure of ion conductive membranes for energy co...[J],Chinese Journal of Chemical Engineering,2022,24(5):558-571
- [14]Shi, Jianhang, Du, Naixu, 郑文姬, 李祥村, Dai, Yan, 贺高红.Ultrathin Ni-Co double hydroxide nanosheets with conformal graphene coating for highly active o...[J],CHEMICAL ENGINEERING JOURNAL,2022,327:9-17
- [15]丁锐, 杨凯, 贺高红, 代岩, 郑文姬, 李祥村, 焉晓明, 刘毅, 阮雪华, 李少杰, 杨晓晨.Vesicles-shaped MOF-based mixed matrix membranes with intensified interfacial affinity and CO2 tr...[J],CHEMICAL ENGINEERING JOURNAL,2022,43:128807-128807
- [16]郑文姬, 贺高红, Deng, Yulin.Wavelength-tunable photoconductivity of dye-sensitized TiO2 nanoparticle films[J],OPTICS LETTERS,2022,37(17):3585-3587
- [17]郑文姬, Ding, Rui, Yang, Kai, Dai, Yan, 焉晓明, 贺高红.ZIF-8 nanoparticles with tunable size for enhanced CO2 capture of Pebax based MMMs[J],SEPARATION AND PURIFICATION TECHNOLOGY,2022,214(,SI):111-119
- [18]Yang, Kai, Dai, Yan, 郑文姬, 阮雪华, Li, Hao, 贺高红.ZIFs-modified GO plates for enhanced CO2 separation performance of ethyl cellulose based mixed ...[J],SEPARATION AND PURIFICATION TECHNOLOGY,2022,214(,SI):87-94
- [19]李建卫, 焉晓明, 阮雪华, 郑文姬, 贺高红, 戴建, 邓润连.β-C位引入供电子羟基增强季铵化聚砜膜的热碱稳定性[J],高分子材料科学与工程,2022,12:38-42
- [20]Zhang, Ning, 贺高红, Qi, Wenxu, Huang, Lili, Jiang, En, Li, Zhiying, Luo, Yang, Xiaopeng, 鲍军江, 郑文姬.A composite membrane of cross-linked GO network semi-interpenetrating in polysulfone substrate ...[J],JOURNAL OF MEMBRANE SCIENCE,2022,613