在基于氧离子的金属有机框架中将烯与气分离的最佳结合关系
Yi Xie1, Yanshu Shi1, Eder M Cedeño Morales2
1Department of Chemistry, University of Texas at San Antonio, San Antonio, Texas 78249, United States.
Journal of the American Chemical Society
|January 24, 2023
概括
一个新的氧化金属有机框架,UTSA-400,有效地将烯与分离. 这种吸附剂具有很高的容量和选择性,超过了生产聚合物级的传统方法.
科学领域:
- 材料科学
- 化学工程
- 吸附科学
背景情况:
- -分离对于聚合物生产至关重要,但通过冷蒸消耗大量能量.
- 为选择性分子选寻找高性能吸附剂,但容量限制仍然存在.
- 开发先进的材料是克服选择性和吸附能力之间的权衡的关键.
研究的目的:
- 引入UTSA-400,一种氧化超微孔金属有机框架,用于高效的分离.
- 研究UTSA-400内选择性吸附和增强吸收的机制.
- 展示UTSA-400在生产高纯度中的实际应用.
主要方法:
- 基于氧化的金属有机框架UTSA-400的合成和表征
- 吸附实验以评估和的吸收和选择性.
- 现场红外光谱和密度函数理论 (DFT) 计算以阐明宿主-客的相互作用.
- 列突破实验以评估动态分离性能.
主要成果:
- UTSA-400表现出具有最佳结合亲和力的一维孔道,不包括.
- 在UTSA-400中暴露的氧化物/位增强了的吸收和宿主相互作用.
- 在环境条件下实现烯的接近和和高密度.
- 已证明生产高动态生产率的聚合物级烯 (>99.5%).
结论:
- 通过优化客体结合,UTSA-400有效地打破了吸附分离中的选择性-容量权衡.
- 材料的孔隙工程和功能部位使得烯的吸收和分离效率更高.
- 这项工作为设计用于气体分离的先进吸附剂提供了新的策略.
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