Congcong Wang
Jilin University
5 Papers
Congcong Wang is an academic researcher from Jilin University. The author has contributed to research in topics: Chlorobenzene & Adsorption. The author has an hindex of 3, co-authored 5 publications.
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Papers
Synthesis of N-containing porous aromatic frameworks via Scholl reaction for reversible iodine capture
TL;DR: In this article, three kinds of porous organic frameworks (POFs) with N-containing building units were constructed via cost-effective and maneuverable Scholl reaction, and the obtained PAFs exhibited moderate porosity and satisfying thermal stability.
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Band structure tunable synthesis of photocatalytic porous aromatic frameworks via Scholl reaction
TL;DR: Porous aromatic framework (PAF) materials with π-π conjugation system based on Scholl reaction were found to exhibit satisfying photocatalytic performance, that can successfully degrade Rhodamine B (RhB) and colorless phenol as mentioned in this paper.
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The preparation of porosity modified porous organic frameworks via kaolin loading and its improved aromatic organic compounds removal performance
Congcong Wang,Peiping Zhang,Jian Wang,Jiyang Wu,Zongjv Yang,Jinzhu Liu,Ren Shifeng,Bo Jin,Hao Ren,Lina Li +9 more
TL;DR: In this paper, a new type of organic porous material (PAF-45/KAL), that was doped with Kaolin during the synthesis of PAF45, possesses better performance in adsorption and photocatalytic degradation of aromatic organic compound (AOC).
5
Patent
Porous polymer capable of adsorbing and degrading benzene pollutants largely
Lina Li,Congcong Wang,Wei Wang,Jian Wang +3 more
- 03 Jan 2020
TL;DR: In this paper, the authors proposed a porous polymer capable of adsorbing and degrading benzene pollutants largely, which mainly concentrates preparation of the porous polymer with environmental governance potential as well as the adaption and degrading properties of the polymeric material on benzene series.
Effective removal of aromatic pollutants via adsorption and photocatalysis of porous organic frameworks
TL;DR: PAF-45 with a wholly aromatic framework, intrinsic microporosity and π-π conjugation system shows excellent performance in aromatic pollutant removal as discussed by the authors, and exhibits a high adsorption capacity for the benzene series and moderate photocatalytic performance.