Literature DB >> 28207233

Nanoscale PdO Catalyst Functionalized Co3O4 Hollow Nanocages Using MOF Templates for Selective Detection of Acetone Molecules in Exhaled Breath.

Won-Tae Koo1, Sunmoon Yu1, Seon-Jin Choi1, Ji-Soo Jang1, Jun Young Cheong1, Il-Doo Kim1.   

Abstract

The increase of surface area and the functionalization of catalyst are crucial to development of high-performance semiconductor metal oxide (SMO) based chemiresistive gas sensors. Herein, nanoscale catalyst loaded Co3O4 hollow nanocages (HNCs) by using metal-organic framework (MOF) templates have been developed as a new sensing platform. Nanoscale Pd nanoparticles (NPs) were easily loaded on the cavity of Co based zeolite imidazole framework (ZIF-67). The porous structure of ZIF-67 can restrict the size of Pd NPs (2-3 nm) and separate Pd NPs from each other. Subsequently, the calcination of Pd loaded ZIF-67 produced the catalytic PdO NPs functionalized Co3O4 HNCs (PdO-Co3O4 HNCs). The ultrasmall PdO NPs (3-4 nm) are well-distributed in the wall of Co3O4 HNCs, the unique structure of which can provide high surface area and high catalytic activity. As a result, the PdO-Co3O4 HNCs exhibited improved acetone sensing response (Rgas/Rair = 2.51-5 ppm) compared to PdO-Co3O4 powders (Rgas/Rair = 1.98), Co3O4 HNCs (Rgas/Rair = 1.96), and Co3O4 powders (Rgas/Rair = 1.45). In addition, the PdO-Co3O4 HNCs showed high acetone selectivity against other interfering gases. Moreover, the sensor array clearly distinguished simulated exhaled breath of diabetics from healthy people's breath. These results confirmed the novel synthesis of MOF templated nanoscale catalyst loaded SMO HNCs for high performance gas sensors.

Entities:  

Keywords:  ZIF-67; catalyst; gas sensors; metal oxide; metal−organic framework

Mesh:

Substances:

Year:  2017        PMID: 28207233     DOI: 10.1021/acsami.7b01284

Source DB:  PubMed          Journal:  ACS Appl Mater Interfaces        ISSN: 1944-8244            Impact factor:   9.229


  14 in total

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8.  Online Accurate Detection of Breath Acetone Using Metal Oxide Semiconductor Gas Sensor and Diffusive Gas Separation.

Authors:  Hao Dong; Libin Qian; Yaoxuan Cui; Xubin Zheng; Chen Cheng; Qingpeng Cao; Feng Xu; Jin Wang; Xing Chen; Di Wang
Journal:  Front Bioeng Biotechnol       Date:  2022-03-08

9.  Synthesis of Pd-loaded mesoporous SnO2 hollow spheres for highly sensitive and stable methane gas sensors.

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10.  Facile construction of a ZIF-67/AgCl/Ag heterojunction via chemical etching and surface ion exchange strategy for enhanced visible light driven photocatalysis.

Authors:  Wei Shao; Yan-Ru Chen; Feng Xie; Hao Zhang; Hai-Tao Wang; Na Chang
Journal:  RSC Adv       Date:  2020-10-16       Impact factor: 4.036

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