Jiang Gong   研究员(自然科学)

截止2025年1月23日,累计发表SCI论文158篇。其中第一作者/通讯作者89篇,包括国际一流期刊Progress in Polymer Science(影响因子26),Advanced Materials(影响因子27.4),Advanced Energy Materials (影响因子24.4),Angewandte Chemie International Edition(影响因子16.1),Chem(影响因子19.1),Applied Catalysis B: Environmental(影响因子20.2,4篇),Chemical Engineering Journal(影响因子13.3,11篇),Jour...Detials

Hybrid membranes of zeolitic imidazolate frameworks with cagelike pores for solar steam evaporation

Release time:2024-08-25  Hits:

  • Indexed by:Journal paper
  • First Author:Yingying Zhu,
  • Correspondence Author:Zhiyue Dong,Minghua Zeng
  • Co-author:Hongyu Lan,Panpan He,Xiangwei Zhu,Jiang Gong
  • Journal:Materials Advances
  • Included Journals:SCI、EI
  • Discipline:Engineering
  • First-Level Discipline:Material Science and Engineering
  • Document Type:J
  • Volume:4
  • Page Number:1628-1636
  • Date of Publication:2023-03-15
  • Abstract:Zeolitic imidazolate frameworks (ZIFs) are widely studied for selective transport of small molecules with their designable channels and cage-like pores. Herein, we design solar-thermal hybrid membrane ZCP-20 (ZIF-8/CNTs@PCMVIMBr-20), where ZIF-8 is used as a water transmission channel. ZIF-8 was integrated with self-crosslinking PCMVIMBr (poly[1-cyanomethyl-3-vinylimidazolium bromide]), where its imidazole moiety coordinates with Zn ions to give a mechanically robust membrane. The hydrophobic channels of ZIF-8 enable the formation of discrete water clusters. Differential scanning calorimetry and dark water evaporation rate evaluation indicate that the water evaporation enthalpy in the ZCP-20 membrane is 1.00 kJ g−1. Consequently, the ZCP-20 membrane exhibits a high evaporation rate of 2.48 kg m−2 h−1 under one sun irradiation and displays stable evaporation rates for 20 h. Remarkably, the ZCP-20 membrane can tolerate various water sources (e.g., dye-polluted water) or even strongly acidic (pH = 1) or basic (pH = 13) solutions.
  • Links to published journals:https://pubs.rsc.org/en/content/articlelanding/2023/ma/d3ma00075c