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用于气体检测的尖晶石氧化物上的有用高熵源

Useful High-Entropy Source on Spinel Oxides for Gas Detection.

作者信息

Hashishin Takeshi, Taniguchi Haruka, Li Fei, Abe Hiroya

机构信息

Faculty of Advanced Science and Technology, Kumamoto University, Kumamoto 860-8555, Japan.

Faculty of Engineering, Kumamoto University, Kumamoto 860-8555, Japan.

出版信息

Sensors (Basel). 2022 Jun 1;22(11):4233. doi: 10.3390/s22114233.

Abstract

This study aimed to identify a useful high-entropy source for gas detection by spinel oxides that are composed of five cations in nearly equal molar amounts and free of impurities. The sensor responses of the spinel oxides [1# (CoCrFeMnNi)O, 2# (CoCrFeMnZn)O, 3# (CoCrFeNiZn)O, 4# (CoCrMnNiZn)O, 5# (CoFeMnNiZn)O, and 6# (CrFeMnNiZn)O] were evaluated for the test gases (7 ppm NO, 5000 ppm H, 3 ppm NH, and 3 ppm HS). In response to NO, 1# and 2# showed p-type behavior while 3-6# showed n-type semiconductor behavior. There are three p-type and one n-type AO structural compositions in ABO[AO·BO] type spinel, and 1# showed a stable AO composition because cation migration from site B to site A is unlikely. Therefore, it was assumed that 1# exhibited p-type behavior. The p-type behavior of 2# was influenced by Cr oxide ions that were present at the B site and the stable p-type behavior of zinc oxide at the A site. The spinel oxides 3# to 6# exhibited n-type behavior with the other cationic oxides rather than the dominant p-type behavior exhibited by the Zn oxide ions that are stable at the A site. In contrast, the sensor response to the reducing gases H, NH, and HS showed p-type semiconductor behavior, with a particularly selective response to HS. The sensor responses of the five-element spinel oxides in this study tended to be higher than that of the two-element Ni ferrites and three-element Ni-Zn ferrites reported previously. Additionally, the susceptibility to sulfurization was evaluated using the thermodynamic equilibrium theory for the AO and BO compositions. The oxides of Cr, Fe, and Mn ions in the BO composition did not respond to HS because they were not sulfurized. The increase in the sensor response due to sulfurization was attributed to the decrease in the depletion layer owing to electron sensitization, as the top surface of the p-type semiconductors, ZnO and NiO, transformed to n-type semiconductors, ZnS and NiS, respectively. High-entropy oxides prepared using the hydrothermal method with an equimolar combination of five cations from six elements (Cr, Mn, Fe, Co, Ni, and Zn) can be used as a guideline for the design of high-sensitivity spinel-type composite oxide gas sensors.

摘要

本研究旨在通过由五种阳离子以近乎等摩尔量组成且无杂质的尖晶石氧化物来确定一种用于气体检测的有用高熵源。评估了尖晶石氧化物[1#(CoCrFeMnNi)O、2#(CoCrFeMnZn)O、3#(CoCrFeNiZn)O、4#(CoCrMnNiZn)O、5#(CoFeMnNiZn)O和6#(CrFeMnNiZn)O]对测试气体(7 ppm NO、5000 ppm H、3 ppm NH和3 ppm HS)的传感器响应。对于NO,1#和2#表现出p型行为,而3 - 6#表现出n型半导体行为。在ABO[AO·BO]型尖晶石中有三种p型和一种n型AO结构组成,并且1#表现出稳定的AO组成,因为阳离子从B位迁移到A位不太可能。因此,推测1#表现出p型行为。2#的p型行为受B位存在的Cr氧化物离子以及A位氧化锌的稳定p型行为影响。尖晶石氧化物3#至6#表现出n型行为,与其他阳离子氧化物相关,而非由在A位稳定的氧化锌离子表现出的主要p型行为。相比之下,对还原气体H、NH和HS的传感器响应表现出p型半导体行为,对HS具有特别的选择性响应。本研究中五元尖晶石氧化物的传感器响应往往高于先前报道的二元镍铁氧体和三元镍锌铁氧体。此外,使用AO和BO组成的热力学平衡理论评估了硫化敏感性。BO组成中的Cr、Fe和Mn离子的氧化物对HS无响应,因为它们未被硫化。由于硫化导致的传感器响应增加归因于电子敏化使耗尽层减小,因为p型半导体ZnO和NiO的顶面分别转变为n型半导体ZnS和NiS。使用来自六种元素(Cr、Mn、Fe、Co、Ni和Zn)的五种阳离子等摩尔组合通过水热法制备的高熵氧化物可作为设计高灵敏度尖晶石型复合氧化物气体传感器的指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/168c/9185461/284a5d691b9b/sensors-22-04233-g001.jpg

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