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用于高活性和耐用催化材料的基于氧化物纳米纤维功能化的前体溶液杂化物

Ex-Solution Hybrids Functionalized on Oxide Nanofibers for Highly Active and Durable Catalytic Materials.

作者信息

Kim Dong-Ha, Kim Jun Kyu, Oh DongHwan, Park Seyeon, Kim Yong Beom, Ko Jaehyun, Jung WooChul, Kim Il-Doo

机构信息

Department of Materials Science and Engineering, Korea Advanced Institute of Science and Technology (KAIST), 291 Daehak-ro, Yuseong-gu, Daejeon 34141, Republic of Korea.

出版信息

ACS Nano. 2023 Mar 28;17(6):5842-5851. doi: 10.1021/acsnano.2c12580. Epub 2023 Mar 14.

Abstract

Ex-solution catalysts containing spontaneously formed metal nanoparticles socketed on the surface of reservoir oxides have recently been employed in various research fields including catalysis and sensing, due to the process efficiency and outstanding chemical/thermal stability. However, since the ex-solution process accompanies harsh reduction heat treatment, during which many oxides undergo phase decomposition, it restricts material selection and further advancement. Herein, we propose an elaborate design principle to uniformly functionalize ex-solution catalysts at porous oxide frameworks via an electrospinning process. As a case study, we selected the ex-solved LaCaFeCoNiO ( = 0, 0.025 and 0.05) and SnO nanofibers as ex-solution hybrids and main frameworks, respectively. We confirmed superior dimethyl sulfide (CHS) gas sensing characteristics with excellent long-cycling stability. In particular, the high catalytic activities of ex-solved CoNiFe ternary nanoparticles, strongly socketed on reservoir oxide, accelerate the spillover process of O to dramatically enhance the response toward sulfuric analytes with exceptional tolerance. Altogether, our contribution represents an important stepping-stone to a rational design of ex-solved particle-reservoir oxide hybrids functionalized on porous oxide scaffolds for a variety of applications.

摘要

由于工艺效率和出色的化学/热稳定性,含有自发形成的金属纳米颗粒且这些颗粒镶嵌在储氧氧化物表面的析出溶液催化剂最近已被应用于包括催化和传感在内的各种研究领域。然而,由于析出溶液过程伴随着苛刻的还原热处理,在此期间许多氧化物会发生相分解,这限制了材料的选择和进一步发展。在此,我们提出一种精细的设计原则,通过静电纺丝工艺在多孔氧化物框架上均匀地功能化析出溶液催化剂。作为一个案例研究,我们分别选择了析出的LaCaFeCoNiO( = 0、0.025和0.05)和SnO纳米纤维作为析出溶液杂化物和主要框架。我们证实了其具有优异的二甲基硫醚(CHS)气体传感特性以及出色的长循环稳定性。特别是,牢固镶嵌在储氧氧化物上的析出的CoNiFe三元纳米颗粒的高催化活性加速了O的溢出过程,从而显著增强了对含硫分析物的响应,并具有出色的耐受性。总之,我们的贡献是朝着合理设计在多孔氧化物支架上功能化的析出颗粒 - 储氧氧化物杂化物以用于各种应用迈出的重要一步。

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