Preparation of COF-TpPa1 membranes by chemical vapor deposition method for separation of dyes

被引:71
作者
Hao, Shuang [1 ]
Zhang, Tianqi [1 ]
Fan, Shengnan [1 ]
Jia, Zhiqian [1 ]
Yang, Yu [2 ]
机构
[1] Beijing Normal Univ, Coll Chem, Beijing 100875, Peoples R China
[2] Beijing Normal Univ, Coll Environm, Beijing 100875, Peoples R China
基金
中国国家自然科学基金;
关键词
COF-TpPa1; Membrane; Chemical vapor deposition; Separation; Dyes; COVALENT ORGANIC FRAMEWORKS; SATURATED VAPOR; PRESSURE; CATALYSIS; GROWTH;
D O I
10.1016/j.cej.2021.129750
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Covalent organic frameworks (COFs) exhibit potentials in adsorption, separation, heterogeneous catalysis, and energy storage due to low density, high thermal stability and inherent porosity. In this work, p-phenylenediamine (PDA) and 2,4,6-trihydroxy-benzene-1,3,5-tricarbaldehyde (TFP) were simultaneously evaporated onto modified poly(1,1-difluoroethylene) (PVDF) membrane in a chemical vapor deposition reactor to prepare COF-TpPa1 membranes for the separation of dyes. The effects of evaporation temperature, evaporation time, amount of Fe powder and pores size of PVDF membranes were studied, and the long-term operation was evaluated. The membranes showed an excellent water permeance (up to 400 L m- 2 h- 1 MPa- 1) with high rejection ( 90%) for different dyes (Mw 450-800), and low rejection (<8.2%) for salts. The COF-TpPa1 membrane also displayed considerable long-term operation stability. This facile approach can be extended to the preparation of a broad range of COFs membranes.
引用
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页数:11
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共 41 条
[1]   Synthesis of pyrrolidinone derivatives from aniline, an aldehyde and diethyl acetylenedicarboxylate in an ethanolic citric acid solution under ultrasound irradiation [J].
Ahankar, Hamideh ;
Ramazani, Ali ;
Slepokura, Katarzyna ;
Lis, Tadeusz ;
Joo, Sang Woo .
GREEN CHEMISTRY, 2016, 18 (12) :3582-3593
[2]   Atmospheric pressure chemical vapor deposition of WSe2 thin films on glass -: highly hydrophobic sticky surfaces [J].
Boscher, ND ;
Carmalt, CJ ;
Parkin, IP .
JOURNAL OF MATERIALS CHEMISTRY, 2006, 16 (01) :122-127
[3]   Design and synthesis of covalent organic frameworks towards energy and environment fields [J].
Cao, Shuai ;
Li, Bing ;
Zhu, Rongmei ;
Pang, Huan .
CHEMICAL ENGINEERING JOURNAL, 2019, 355 :602-623
[4]   A new application for the Antoine equation in formulation development [J].
Chatterjee, K ;
Dollimore, D ;
Alexander, K .
INTERNATIONAL JOURNAL OF PHARMACEUTICS, 2001, 213 (1-2) :31-44
[5]   Intermetallic catalyst for carbon nanotubes (CNTs) growth by thermal chemical vapor deposition method [J].
Chen, Chia-Ming ;
Dai, Yong-Ming ;
Huang, Jenn Gwo ;
Jehng, Jih-Mirn .
CARBON, 2006, 44 (09) :1808-1820
[6]   Microwave-Assisted Solvothermal Synthesis of Covalent Organic Frameworks (COFs) with Stable Superhydrophobicity for Oil/Water Separation [J].
Chen, Li ;
Du, Jingcheng ;
Zhou, Wei ;
Shen, Huizhen ;
Tan, Luxi ;
Zhou, Cailong ;
Dong, Lichun .
CHEMISTRY-AN ASIAN JOURNAL, 2020, 15 (21) :3421-3427
[7]   Photoelectric Covalent Organic Frameworks: Converting Open Lattices into Ordered Donor-Acceptor Heterojunctions [J].
Chen, Long ;
Furukawa, Ko ;
Gao, Jia ;
Nagai, Atsushi ;
Nakamura, Toshikazu ;
Dong, Yuping ;
Jiang, Donglin .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2014, 136 (28) :9806-9809
[8]   Growth of nonpolar m-plane GaN epitaxial film on a lattice-matched (100) β-LiGaO2 substrate by chemical vapor deposition [J].
Chou, Mitch M. C. ;
Chen, Chenlong ;
Hang, D. R. ;
Yang, Wen-Ting .
THIN SOLID FILMS, 2011, 519 (15) :5066-5069
[9]   THE OXIDATION POTENTIAL OF 1,4-DIAMINOBENZENE - CALCULATION VERSUS EXPERIMENT [J].
COMPTON, RG ;
KING, PM ;
REYNOLDS, CA ;
RICHARDS, WG ;
WALLER, AM .
JOURNAL OF ELECTROANALYTICAL CHEMISTRY, 1989, 258 (01) :79-88
[10]   Porous, crystalline, covalent organic frameworks [J].
Côté, AP ;
Benin, AI ;
Ockwig, NW ;
O'Keeffe, M ;
Matzger, AJ ;
Yaghi, OM .
SCIENCE, 2005, 310 (5751) :1166-1170