Novel Ni3S2 based room temperature humidity sensor and potential breath analyzer

被引:1
|
作者
Linganiso, E. C. [1 ,2 ]
Coville, N. J. [1 ,2 ]
Mhlanga, S. D. [3 ]
Mwakikunga, B. W. [4 ]
Singh, T. [5 ]
Fischer, T. [5 ]
Mathur, S. [5 ]
Linganiso, Z. L. [6 ]
Motaung, T. E. [6 ]
机构
[1] Univ Witwatersrand, DST NRF Ctr Excellence Strong Mat, Private Bag 3, ZA-2050 Johannesburg, South Africa
[2] Univ Witwatersrand, Mol Sci Inst, Sch Chem, Private Bag 3, ZA-2050 Johannesburg, South Africa
[3] DST Mintek Nanotechnol Innovat Ctr, ZA-2194 Johannesburg, South Africa
[4] CSIR, DST CSIR Natl Ctr Nanostruct Mat, POB 395, ZA-0001 Pretoria, South Africa
[5] Univ Cologne, Inst Inorgan Chem, D-50939 Cologne, Germany
[6] Univ Zululand, Dept Chem, ZA-3886 Kwa Dlangezwa, South Africa
来源
关键词
WO3; ZNO; PHOTOLUMINESCENCE; DIAGNOSIS; ACETONE; TOLUENE; SNO2;
D O I
10.1109/sensors43011.2019.8956588
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Nanostructure based semiconductors have recently been considered for relative humidity (RH) monitoring due to their superior surface chemical properties when compared to their bulk counterparts. The RH sensing is measured by using a change in resistance of the material in different RH environments. Rhombohedral phase Ni3S2 nanostructure based flower-like structures were synthesized via a low cost microwave assisted hydrothermal method. The flowers were mounted on a device and analyzed for RH sensing. A sensing response of up to 116 times was achieved for the device at 63 % RH, which is higher than the response that has been reported for ZnS nanowires for 75 % RH. The evaluation of exhaled breath components by use of a gas sensor in order to improve the diagnosis and monitoring of respiratory and systematic diseases is growing very fast. The response measurement of the Ni3S2 device when exposed to human breath measured at different time intervals was investigated and preliminary results are presented.
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收藏
页数:4
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