Closer Look at Adsorption of Sarin and Simulants on Metal-Organic Frameworks

被引:21
作者
Emelianova, Alina [1 ]
Reed, Allen [1 ]
Basharova, Elizaveta A. [2 ]
Kolesnikov, Andrei L. [3 ]
Gor, Gennady Y. [1 ]
机构
[1] New Jersey Inst Technol, Otto H York Dept Chem & Mat Engn, Newark, NJ 07102 USA
[2] Univ Leipzig, D-04103 Leipzig, Germany
[3] Inst Nichtklass Chem e V, D-04318 Leipzig, Germany
关键词
metal-organic frameworks; chemical warfare agents; adsorption isotherms; molecular simulations; organophosphorus compounds; CHEMICAL WARFARE AGENTS; FORCE-FIELD; DECOMPOSITION; IMIDAZENIL; CAPTURE;
D O I
10.1021/acsami.3c02713
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
The development of effective protection against exposure to chemical warfare agents (CWAs), such as sarin, relies on studies of its adsorption on the capturing materials and seeking candidates capable of adsorbing large amounts of sarin gas. Many metal-organic frameworks (MOFs) are promising materials for the effective capture and degradation of sarin and simulant substances. Among the simulants capable of mimicking thermodynamic properties of the agent, not all of them have been investigated on the ability to act similarly in the adsorption process, in particular, whether the agent and a simulant have similar mechanisms of binding to the MOF surface. Molecular simulation studies not only provide a safe way to investigate the aforementioned processes but can also help reveal the mechanisms of interactions between the adsorbents and the adsorbing compounds at the molecular level. We performed Monte Carlo simulations of the adsorption of sarin and three simulants, dimethyl methylphosphonate (DMMP), diisopropyl methylphosphonate (DIMP), and diisopropyl fluorophosphate (DIFP), on selected MOFs that have previously shown strong capabilities to adsorb sarin. On the basis of the calculated adsorption isotherms, enthalpy of adsorption, and radial distribution functions, we revealed common mechanisms among the particularly efficient adsorbents as well as the ability of simulants to mimic them. The findings can help in selecting a suitable simulant compound to study CWA adsorption on MOFs and guide further synthesis of efficient MOFs for the capture of organophosphorus compounds.
引用
收藏
页码:18559 / 18567
页数:9
相关论文
共 52 条
[41]   Uncovering the Role of Metal-Organic Framework Topology on the Capture and Reactivity of Chemical Warfare Agents [J].
Son, FlorenciaA ;
Wasson, Megan C. ;
Islamoglu, Timur ;
Chen, Zhijie ;
Gong, Xinyi ;
Hanna, Sylvia L. ;
Lyu, Jiafei ;
Wang, Xingjie ;
Idrees, Karam B. ;
Mahle, John J. ;
Peterson, Gregory W. ;
Farha, Omar K. .
CHEMISTRY OF MATERIALS, 2020, 32 (11) :4609-4617
[42]   Graphene Oxide and Metal-Organic Framework-Based Breathable Barrier Membranes for Toxic Vapors [J].
Song, Yufeng ;
Peng, Cheng ;
Iqbal, Zafar ;
Sirkar, Kamalesh K. ;
Peterson, Gregory W. ;
Mahle, John J. ;
Buchanan, James H. .
ACS APPLIED MATERIALS & INTERFACES, 2022, 14 (27) :31321-31331
[43]   Behavior of the Enthalpy of Adsorption in Nanoporous Materials Close to Saturation Conditions [J].
Torres-Knoop, Ariana ;
Poursaeidesfahani, Ali ;
Vlugt, Thijs J. H. ;
Dubbeldam, David .
JOURNAL OF CHEMICAL THEORY AND COMPUTATION, 2017, 13 (07) :3326-3339
[44]   Sarin Decomposition on Pristine and Hydroxylated ZnO: Quantum-Chemical Modeling [J].
Tsyshevsky, Roman ;
Holdren, Scott ;
Eichhorn, Bryan W. ;
Zachariah, Michael R. ;
Kuklja, Maija M. .
JOURNAL OF PHYSICAL CHEMISTRY C, 2019, 123 (43) :26432-26441
[45]   Computational evaluation of the chemical warfare agents capture performances of robust MOFs [J].
Vieira Soares, C. ;
Leitao, A. A. ;
Maurin, G. .
MICROPOROUS AND MESOPOROUS MATERIALS, 2019, 280 :97-104
[46]   Molecular Modeling of Organophosphorous Agents and Their Aqueous Solutions [J].
Vishnyakov, Aleksey ;
Gor, Gennady Yu. ;
Lee, Ming-Tsung ;
Neimark, Alexander V. .
JOURNAL OF PHYSICAL CHEMISTRY A, 2011, 115 (20) :5201-5209
[47]   Molecular Dynamics Simulation of Nanoscale Distribution and Mobility of Water and Dimethylmethylphosphonate in Sulfonated Polystyrene [J].
Vishnyakov, Aleksey ;
Neimark, Alexander V. .
JOURNAL OF PHYSICAL CHEMISTRY B, 2008, 112 (47) :14905-14910
[48]   Sensing and capture of toxic and hazardous gases and vapors by metal-organic frameworks [J].
Wang, Hao ;
Lustig, William P. ;
Li, Jing .
CHEMICAL SOCIETY REVIEWS, 2018, 47 (13) :4729-4756
[49]   SOME TOPICS IN THEORY OF FLUIDS [J].
WIDOM, B .
JOURNAL OF CHEMICAL PHYSICS, 1963, 39 (11) :2808-&
[50]   Algorithms and tools for high-throughput geometry-based analysis of crystalline porous materials [J].
Willems, Thomas F. ;
Rycroft, Chris ;
Kazi, Michaeel ;
Meza, Juan C. ;
Haranczyk, Maciej .
MICROPOROUS AND MESOPOROUS MATERIALS, 2012, 149 (01) :134-141