催化作用
化学反应
过程(计算)
量子化学
分子动力学
反应机理
多相催化
化学过程
化学
计算机科学
纳米技术
生化工程
反应条件
计算化学
精细化工
多孔介质
多尺度建模
化学反应工程
化学反应动力学
工艺工程
分子模型
机制(生物学)
分子筛
材料科学
作者
R. P. Verma,Sudhir K. Sahoo
标识
DOI:10.1002/slct.202501858
摘要
Abstract Molecular modeling provides atomistic details of the reaction mechanism which is essential to understand the process and structure–activity relationship as well as aids in designing the catalysts. Zeolites are an important class of crystalline, porous materials extensively used in industry as catalysts, adsorbent, ion‐exchange, gas adsorption, and separation. However, modeling catalytic reactions in zeolites is challenging due to their large size. Further, the timescale associated with chemical transformations often exceed the limits of conventional molecular dynamics simulations. A plethora of methods involving quantum chemical calculations are usually employed to model chemical reactions in zeolites, however, each method has its advantage and limitations. In this review, we present some of the widely employed computational methods as well as recently developed methods to model catalytic reactions in zeolites.
科研通智能强力驱动
Strongly Powered by AbleSci AI