材料科学
分子筛
膜
化学工程
粒径
粒子(生态学)
碳纤维
气体分离
选择性
微尺度化学
纳米技术
筛子(范畴论)
混合材料
巴勒
纳米尺度
分子动力学
粒子聚集
分子
选择性吸附
吸附
作者
Yin Li,Meiling Li,Hailun Xia,Shanshan Mao,Fangyuan Gai,Hao Wang
标识
DOI:10.1002/adfm.202519671
摘要
Abstract The gas separation performance of hybrid carbon molecular sieve membranes is critically influenced by the particle size of the fillers. Herein, ZIF‐8 crystals of different sizes (≈50 nm, ≈500 nm, and ≈1 µm) are used as fillers to synthesize a series of ZIF‐8‐derived‐carbon hybrid carbon molecular sieve membranes with high filler loading. As the ZIF‐8 crystal size increases from nanoscale to microscale, the CO 2 permeability of the resulting hybrid carbon molecular sieve membrane for a CO 2 /CH 4 binary mixture increases, reaching 9965 Barrer with a selectivity of 28.05. This trend highlights a clear correlation between filler size and gas separation performance of the hybrid carbon molecular sieve membranes. Microscale ZIF‐8‐derived‐carbon offers synergistic advantages by providing abundant hierarchical pores for molecular sieving and continuous, long pathways for efficient gas transport, while preventing particle aggregation under high loading. Our finding provides valuable insights for the further development of high‐performance hybrid carbon molecular sieve membranes.
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