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구성원
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인용수 63
·2024
MOF-derived metal oxide (Cu, Ni, Zn) gas sensors with excellent selectivity towards H2S, CO and H2 gases
Carmen Montoro, Jin Young Kim, Ali Mirzaei, Jae‐Hyoung Lee, Syreina Sayegh, Elissa Makhoul, Igor Iatsunskyi, Emerson Coy, Mikhaël Bechelany, Hyoun Woo Kim, Sang Sub Kim
IF 14.2Composites Part B Engineering
초록

Metal-organic framework (MOF)-derived metal oxides blend the sensing properties of metal oxides with MOF porosity, enhancing gas sensing capabilities. In this study, M-MOFs (M = Cu, Ni and Zn) were synthesized and then calcined at different temperatures to obtain their corresponding metal oxides (CuO, NiO and ZnO). The synthesis method incorporated novel approaches to enhance sensor performance, such as optimizing calcination temperatures for improved selectivity. Structural and morphological analyses confirmed the high surface area and porosity of the metal oxide materials, facilitating efficient gas adsorption and promoting enhanced sensor response. Gas sensing studies revealed significantly enhanced performance of MOF-derived metal oxides over M-MOFs, strongly influenced by calcination temperature. Moreover, CuO, NiO and ZnO MOF-derived metal oxides showed improved selectivity towards H2S, CO and H2 gases, respectively. This study demonstrates that tuning MOF and calcination parameters can tailor sensor selectivity effectively.

키워드
SelectivityMetalOxideMaterials scienceChemical engineeringInorganic chemistryChemistryMetallurgyCatalysisOrganic chemistry
타입
article
IF / 인용수
14.2 / 63
게재 연도
2024

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