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Design of Zeolite-Covalent Organic Frameworks for Methane Storage

机译:岩石储存沸石 - 共价有机框架设计

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摘要

A new type of zeolite-based covalent organic frameworks (ZCOFs) was designed under different topologies and linkers. In this study, the silicon atoms in zeolite structures were replaced by carbon atoms in thiophene, furan, and pyrrole linkers. Through the adoption of this strategy, 300 ZCOFs structures were constructed and simulated. Overall, the specific surface area of ZCOFs is in the range of 300–3500 m /g, whereas the pore size is distributed from 3 to 27 Å. Furthermore, the pore volume exhibits a wide range between 0.01 and 1.5 cm /g. Screening 300 ZCOFs with the criteria towards methane storage, 11 preliminary structures were selected. In addition, the Grand Canonical Monte Carlo technique was utilized to evaluate the CH adsorption ability of ZCOFs in a pressure ranging from 1 to 85 bar at a temperature of 298 K. The result reveals that two ZCOF structures: JST-S 183 (65–5.8 bar) and NPT-S 177 (35–1 bar) are considered as potential adsorbents for methane storage. Furthermore, the thermodynamic stability of representative structures is also checked base on quantum mechanical calculations.
机译:在不同的拓扑和接头下设计了一种新型的沸石的共价有机框架(ZCOFS)。在该研究中,沸石结构中的硅原子被噻吩,呋喃和吡咯接头中的碳原子取代。通过采用该策略,构建和模拟了300种ZCOFS结构。总的来说,ZCOF的比表面积在300-3500m / g的范围内,而孔径分布在3至27埃。此外,孔体积显示在0.01-1.5cm / g之间的宽范围。将300 ZCOF筛选为甲烷储存的标准,选择了11个初步结构。此外,利用大规范蒙特卡罗技术评价ZCOFS在298K温度范围为1至85巴的压力中的CH吸附能力。结果显示,两个ZCOF结构:JST-S183(65- 5.8 BAR)和NPT-S177(35-1 BAR)被认为是甲烷储存的潜在吸附剂。此外,代表性结构的热力学稳定性也被检查在量子力学计算上。

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