Metal–organic frameworks for the removal of toxic industrial chemicals and chemical warfare agents

Металлоорганические каркасы для удаления токсичных промышленных химикатов и отравляющих веществ
Timur İslamoğlu, Omar K. Farha, Randall Q. Snurr, Joseph T. Hupp, Ashlee J. Howarth, N. Scott Bobbitt, Matthew L. Mendonca
2017-01-01

catalytic degradation of sarin and sulfur mustardchemical warfare agentsmetal–organic frameworksselective adsorption in the presence of watertoxic industrial chemicals
S, and some volatile organic compounds, with particular emphasis on the challenging issue of designing materials that selectively adsorb these chemicals in the presence of water. We also examine recent research on the capture and catalytic degradation of chemical warfare agents such as sarin and sulfur mustard using metal-organic frameworks.
1
Designing MOFs that maintain selectivity for target toxic chemicals under humid conditions is a central challenge addressed in recent research.
2
MOFs have been investigated for both capture and catalytic degradation of chemical warfare agents such as sarin and sulfur mustard.
3
Metal–organic frameworks (MOFs) can adsorb toxic industrial chemicals and some volatile organic compounds selectively even in the presence of water.
4
Recent work emphasizes combining adsorption and catalytic functions in MOFs to both remove and deactivate hazardous agents.

Metal–organic frameworks for capture of toxic industrial chemicals and chemical warfare agents

Selective adsorption in the presence of water and capture plus catalytic degradation of toxic industrial chemicals (e.g., S and VOCs) and chemical warfare agents (e.g., sarin, sulfur mustard)

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2017-01-01
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Timur İslamoğlu
Omar K. Farha
Randall Q. Snurr
Joseph T. Hupp
Ashlee J. Howarth
N. Scott Bobbitt
Matthew L. Mendonca
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