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Capture of toxic gases in MOFs: SO2 H2S NH3 and NOx

机译:捕获MOF中的有毒气体:SO2H2SNH3和NOx

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摘要

MOFs are promising candidates for the capture of toxic gases since their adsorption properties can be tuned as a function of the topology and chemical composition of the pores. Although the main drawback of MOFs is their vulnerability to these highly corrosive gases which can compromise their chemical stability, remarkable examples have demonstrated high chemical stability to SO2, H2S, NH3 and NOx. Understanding the role of different chemical functionalities, within the pores of MOFs, is the key for accomplishing superior captures of these toxic gases. Thus, the interactions of such functional groups (coordinatively unsaturated metal sites, μ-OH groups, defective sites and halogen groups) with these toxic molecules, not only determines the capture properties of MOFs, but also can provide a guideline for the desigh of new multi-functionalised MOF materials. Thus, this perspective aims to provide valuable information on the significant progress on this environmental-remediation field, which could inspire more investigators to provide more and novel research on such challenging task.
机译:的MOF是有希望的有毒气体的捕获候选,因为它们的吸附性能可被调节为拓扑和孔的化学组成的函数。虽然MOFs材料的主要缺点是它们对这些高度腐蚀性气体这会损害其化学稳定性的脆弱性,显着的例子已经证明较高的化学稳定性以SO2,H2S,NH3和NOx。了解不同化学官能团的作用,内MOFs材料的毛孔,是完成这些有毒气体的优越捕获的关键。因此,这样的官能团(配位不饱和的金属位点,μ-OH基团,有缺陷的部位和卤素基团)与这些毒性分子的相互作用,不仅决定的MOF的捕获性能外,还可以提供新的DESIGH的准则多官能MOF材料。因此,这种观点旨在提供关于这一环境整治领域,这可能激励更多的研究者提供这种具有挑战性的任务越来越新颖的研究进展显著有价值的信息。

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