Unexpected Penetration of CO Molecule into Zeolitic Micropores Almost Plugged by CuCl via π-Complexation of CO-CuCl

  • Lee, Chan Hyun
  • Kim, Kwangsoo
  • Kim, Jisoo
  • Cho, Kanghee
  • Han, Sang-Sup
  • 외 6명
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초록

Carbon monoxide (CO) is a key reactant in several Fischer-Tropsch processes, including those used in light olefin and methanol syntheses. However, it is highly toxic and causes serious poisoning of noble metal catalysts. Thus, a solid adsorbent that can selectively capture CO, especially at low concentrations, is required. In this study, zeolite Y-based adsorbents in which Cu-(I) ions occupy the supercage cation sites (CuCl/Y) are prepared via solid-state ion exchange. Volumetric adsorption measurements reveal that the Cu-(I) ions significantly enhance CO adsorption in the low-pressure range by p-complexation. Furthermore, unexpected molecular sieving behavior, with extremely high CO/CO2 selectivity, is observed when excess CuCl homogeneously covers the zeolite pore structures. Thus, although CO has a larger kinetic diameter, it can penetrate the zeolite supercage while smaller molecules (i.e., Ar and CO2) cannot. Density functional theory calculations reveal that CO molecules can remain adsorbed in pseudoblocked pores by CuCl, thanks to the strong interaction of C 2p and Cu 3d states, resulting in the high CO/CO2 selectivity. One of the prepared adsorbents, CuCl/Y with 50 wt % CuCl, is capable of selectively capturing 3.04 mmol g(-1) of CO with a CO/CO2 selectivity of >3370.

키워드

Molecular sievingpi-complexationadsorbentkinetic diameterdensity functional theoryTOTAL-ENERGY CALCULATIONSMETAL-ORGANIC FRAMEWORKSGAS SHIFT REACTIONSELECTIVE ADSORPTIONHYDROGEN-PRODUCTIONCOPPER(I) CHLORIDECARBON-MONOXIDEZSM-5 ZEOLITEADSORBENTSEPARATION
제목
Unexpected Penetration of CO Molecule into Zeolitic Micropores Almost Plugged by CuCl via π-Complexation of CO-CuCl
저자
Lee, Chan HyunKim, KwangsooKim, JisooCho, KangheeHan, Sang-SupKim, Hyun WookLee, Ki BongKim, Byung-HyunPark, Jong HyeokKim, KyoungsooPark, Jong-Ho
DOI
10.1021/acsami.3c04849
발행일
2023-05-26
유형
Article
저널명
ACS Applied Materials and Interfaces
15
22
페이지
27411 ~ 27421