Chem. J. Chinese Universities ›› 2017, Vol. 38 ›› Issue (11): 1953.doi: 10.7503/cjcu20170219
• Analytical Chemistry • Previous Articles Next Articles
LI Guangyao1, WANG Yu1, CAO Yinliang1, XIAO Zhongliang1,*(), HUANG Ying1, FENG Zemeng2, YIN Yulong2, CAO Zhong1,*(
)
Received:
2017-04-11
Online:
2017-11-10
Published:
2017-10-30
Contact:
XIAO Zhongliang,CAO Zhong
E-mail:xiaozhongliang@163.com;zhongcao2004@163.com
Supported by:
CLC Number:
TrendMD:
LI Guangyao, WANG Yu, CAO Yinliang, XIAO Zhongliang, HUANG Ying, FENG Zemeng, YIN Yulong, CAO Zhong. SnO2 Hollow Microspheres Used for Rapid and Sensitive Detection of Hydrogen Sulfide†[J]. Chem. J. Chinese Universities, 2017, 38(11): 1953.
Scheme 2 Schematic diagram of the device for gas detection1. AC power source; 2.sample injector; 3. thermohygrometer; 4. temperature and humidity probe; 5. detection cell;6. thermostatic water bath; 7. SnO2 HMS gas sensor; 8. digital multimeter; 9. DC power supply.
Fig.2 TEM images of different nano-materials(A) APF; (B) APF@SnO2 CSMS; (C) SnO2 HMS; (D) high-magnification image of shell edge of SnO2 HMS particles;(E) HRTEM of SnO2; (F) selected area electron diffraction pattern of SnO2 HMS.
Fig.3 N2 adsorption-desorption isotherms of SnO2 HMS before(A) and after(B) calcination at 400 ℃ for 1 hThe insets show the corresponding pore size distributions obtained from the adsorption curves.
Fig.6 Dynamic response curves of SnO2 HMS sensor to different concentrations of H2S(A) and their relation curve of response value vs. concentration(B) Inset of (B) is a linear working curve of response value vs. logarithmic value of concentration.
Fig.7 Continuous response-recovery curve of SnO2 HMS sensor to 142.6 mg/m3 H2S(A) and the corresponding response time curve[B, dotted line of (A)] at operating temperature of 200 ℃
Fig.10 Application of SnO2 HMS sensor for remote monitoring of H2S in pig farm(A) Photograph of SnO2 HMS gas sensor hanging in pig farm; (B) photograph of signal acquisition module of gas sensor.
[1] | Wexler P., Encyclopedia of Toxicology, Elsevier Inc. Academic Press, Cambridge, 2014, 2, 971-974 |
[2] | Qi G. C., Li Z. G., Yuan Z. H., Phys. Chem. Chem. Phys., 2014, 16, 13434-13439 |
[3] | Hosseinia Z. S., Irajizad A., Mortezaali A., Chem. J. Chinese Universities,2010, 31, 865-871 |
[4] | Fu D. Y., Zhu C. L., Zhang X. T., Li C. Y., Chen Y. J., Chem. J. Chinese Universities,2010, 31, 1390-1398 |
[5] | Standardization Administration of the People’s Republic of China, GBZ/T 160 GBZ/T 160.33-2004, Methods for Determination of Sulfides in the Air of Workplace, Standards Press of China, Beijing, 2004 |
(中国标准管理委员会. GBZ/T 160.33-2004, 工作场所空气有毒物质测定-硫化物, 北京: 中国标准出版社, 2004) | |
[6] | Standardization Administration of the People’s Republic of China, GB/T 14678-1993, Air Quality-Determination of Sulfuretted Hydrogen, Methyl Sulfhydryl, Methyl Sulfide and Dimethyl Disulfide-Gas Chromatography GB/T 14678-1993, Air Quality-Determination of Sulfuretted Hydrogen, Methyl Sulfhydryl, Methyl Sulfide and Dimethyl Disulfide-Gas Chromatography. Standards Press of China, Beijing, 1993 |
(中国标准管理委员会. GB/T 14678-93, 空气质量-硫化氢、 甲硫醇、 甲硫醚和二甲二硫的测定-气相色谱法, 北京: 中国标准出版社, 1993) | |
[7] | Bailey T. S., Michael D. P., J. Am. Chem. Soc., 2013, 135, 16697-16704 |
[8] | Jeroschewski P., Steuckart C., Kuhl M., Anal. Chem., 1996, 68, 4351-4357 |
[9] | Singha S., Kim D., Moon H., Wang T., Kim K. H., Shin Y. H., Jung J. Y., Seo E., Lee S. J., Ahn K. H., Anal. Chem., 2015, 87, 1188-1195 |
[10] | Li J. W., Liu X., Cui J. S., Sun J. B., Chem. J. Chinese Universities,2010, 31, 10108-10114 |
[11] | Jang J. S., Kim S. J., Choi S. J., Kim N. H., Hakim M., Rothschild A., Kim I. D., Nanoscale,2015, 7, 16417-16426 |
[12] | Choi S. J., Kim M. P., Lee S. J., Kim B. J., Kim I. D., Nanoscale,2014, 6, 11898-11903 |
[13] | Soniaa S., Kumar P. S., Jayram N. D., Masuda Y., Mangalaraj D., Lee C. M., RSC Adv., 2016, 6, 24290-24298 |
[14] | Qin Y., Zhang F., Chen Y., Zhou Y. J., Li J., Zhu A. W., Luo Y. P., Tian Y., Yang J. H., Chem. J. Chinese Universities,2010, 31, 11994-12000 |
[15] | Hao Q. Y., Li L. M., Yin X. M., Liu S., Li Q. H., Wang T. H., Chem. J. Chinese Universities,2010, 31, 600-605 |
[16] | Ma J. M., Mei L., Chen Y. J., Li Q. H., Wang T. H., Xu Z., Duan X. C., Zheng W. J., Nanoscale,2012, 5, 895-898 |
[17] | Huang H. Y., Xu P. C., Zheng D., Chen C. Z., Li X. X., Chem. J. Chinese Universities,2010, 31, 6330-6339 |
[18] | Mani G. K., Rayappan J. B. B., RSC Adv., 2015, 5, 54952-54962 |
[19] | Huang X. W., Zou X. B., Zhao J. W., Shi J. Y., Li Z. H., Chem. J. Chinese Universities,2010, 31(6), 1175-1180 |
(黄晓玮, 邹小波, 赵杰文, 石吉勇, 李志华. 高等学校化学学报, 2014, 35(6), 1175-1180) | |
[20] | Jagadale T. C., Prasad V., Ramgir N. S., Prajapat C., Patil U. V., Debnath A., Aswal D. K., Gupta S. K., RSC Adv., 2015, 5, 93081-93088 |
[21] | Hu M. J., Wang Z., Chinese J. Anal. Chem., 2016, 44(9), 1315-1321 |
(胡明江, 王忠. 分析化学, 2016, 44(9), 1315-1321) | |
[22] | Cao X. R., Hu M. J., Chinese J. Anal. Chem., 2016, 44(10), 1555-1561 |
(曹小荣, 胡明江. 分析化学, 2016, 44(10), 1555-1561) | |
[23] | Guo Z., Chen G. Q., Zeng G. M., Liu L. Z., Zhang C., RSC Adv., 2015, 5, 54793-54805 |
[24] | Arafat M. M., Dinan B., Akbar S. A., Haseeb A. S. M. A., Sensors,2012, 12, 7207-7258 |
[25] | Rai P., Majhi S. M., Yu Y. T., Lee J. H., RSC Adv., 2015, 5, 76229-76248 |
[26] | Zhang J., Qin Z. Y., Zeng D. W., Xie C. S., Phys. Chem. Chem. Phys., 2017, 19, 6313-6329 |
[27] | Kida T., Fujiyama S., Suematsu K., Yuasa M., Shimanoe K., Chem. J. Chinese Universities,2010, 31, 17574-17582 |
[28] | Tian J. G., Pan F., Xue R. Y., Zhang W., Fang X. T., Liu Q. L., Wang Y. H., Zhang Z. J., Zhang D., Dalton Trans., 2015, 44, 7911-7916 |
[29] | Hu J., Yin G. L., Chen J. C., Ge M. Y., Lu J., Yang Z., He D. N., Phys. Chem. Chem. Phys., 2015, 17, 20537-20542 |
[30] | Han D., Song P., Zhang H. H., Yang Z. X., Wang Q., Mater. Lett., 2014, 124, 93-96 |
[31] | Han B. Q., Liu X., Xing X. X., Chen N., Xiao X. C., Liu S. Y., Wang Y. D., Chem. J. Chinese Universities,2010, 31, 423-430 |
[32] | Rao A., Long H., Harley-Trochimczyk A., Pham T. T., Zettl A., Carraro C., Maboudian R., Chem. J. Chinese Universities,2010, 31, 2634-2641 |
[33] | Zhao J. M., Niu W. X., Zhang L., Cai H. R., Han M. Y., Yuan Y. L., Majeed S., Anjum S., Xu G. B., Macromolecules,2013, 46, 140-145 |
[34] | Wang Y. F., Qu F. D., Liu J., Wang Y., Zhou J. G., Ruan S. P., Chem. J. Chinese Universities,2010, 31, 515-523 |
[35] | Sui L. L., Zhang X. F., Cheng X. L., Wang P., Xu Y. M., Gao S., Zhao H., Huo L. H., Chem. J. Chinese Universities,2010, 31, 1661-1670 |
[36] | Sun J. H., Guo J., Ye J. Y., Song B. J., Zhang K. W., Bai S. L., Luo R. X., Li D. Q., Chen A. F., Chem. J. Chinese Universities,2010, 31, 876-884 |
[37] | Sun Y. F., Liu S. B., Meng F. L., Liu J. Y., Jin Z., Kong L. T., Liu J. H., Sensors,2012, 12, 2610-2631 |
[38] | Das S., Jayaraman V., Prog. Mater. Sci., 2014, 66, 112-255 |
[39] | Barsan N., Weimar U., J. Electroceram., 2001, 7, 143-167 |
[40] | Tricoli A., Righettoni M., Teleki A., Angew. Chem. Int. Ed., 2010, 49, 7632-7659 |
[41] | Yu T. T., Cheng X. L., Zhang X. F., Sui L. L., Xu Y. M., Gao S., Zhao H., Huo L. H., Chem. J. Chinese Universities,2010, 31, 11991-11999 |
[42] | Bai S. L., Chen C., Cui M., Luo R. X., Chen A. F., Li D. Q., RSC Adv., 2015, 5, 50783-50789 |
[43] | Wang D. W., Du S. S., Zhou X., Wang B., Ma J., Sun P., Sun Y. F., Lu G. Y., Chem. J. Chinese Universities,2010, 31, 7438-7442 |
[1] | MENG Xianglong, YANG Ge, GUO Hailing, LIU Chenguang, CHAI Yongming, WANG Chunzheng, GUO Yongmei. Synthesis of Nano-zeolite and Its Adsorption Performance for Hydrogen Sulfide [J]. Chem. J. Chinese Universities, 2022, 43(3): 20210687. |
[2] | MA Junfeng,ZENG Yi. Significant Improvement of CO Sensing Performance Based on Au-sensitized Double-shelled SnO2 Hollow Nanocubes† [J]. Chem. J. Chinese Universities, 2018, 39(9): 1867. |
[3] | WANG Mo, LI Xiaowei, SHAO Changlu, ZHAO Yingqian, XIN Jiayu, HAN Chaohan, LI Xinghua, LIU Yichun. Preparation of p-CuO/n-In2O3 Heterojunction Nanofibers and Their Gas Sensing Properties† [J]. Chem. J. Chinese Universities, 2017, 38(9): 1524. |
[4] | XU Jinbao, WANG Wei, WANG Ce. Cu Doped ZnO Electrospun Nanofibers for Ethanol Detector with Broad Linear Response† [J]. Chem. J. Chinese Universities, 2017, 38(6): 942. |
[5] | ZHOU Xucheng, LI Zhihua, ZOU Xiaobo, SHI Jiyong, HUANG Xiaowei, HU Xuetao. Gas Sensor Based on Porous Film of Polyaniline/sulfonated Nickel Phthalocyanine Composites for the Detection of Ammonia† [J]. Chem. J. Chinese Universities, 2016, 37(3): 460. |
[6] | YANG Min, LIU Xiaoyang, ZHAO Xudong, LI Benxian, WANG Xiaofeng*. Acetone Sensing Characteristics of γ-Fe2O3 Nanofibers† [J]. Chem. J. Chinese Universities, 2014, 35(8): 1615. |
[7] | HUANG Xiaowei, ZOU Xiaobo, ZHAO Jiewen, SHI Jiyong, LI Zhihua. Fabrication and Characteristics Investigation of a Novel Nanosensor for Sulfuretted Hydrogen Operating at Room Temperature† [J]. Chem. J. Chinese Universities, 2014, 35(6): 1175. |
[8] | MA Xiao-Dong, GUO Hong-Wen, LÜ Lu, HE Xuan, FENG Xi. Preparation, Characterization and Gas Sensing Performance of Ag-supported α-Fe2O3 Hybrid [J]. Chem. J. Chinese Universities, 2012, 33(09): 1915. |
[9] |
XUE Yan-Bing1,2*, TANG Zhen-An1.
Density Functional Study of the Properties of CO Adsorption on SnO2(110) Surface [J]. Chem. J. Chinese Universities, 2009, 30(3): 583. |
[10] | SI Shu-Feng*, YANG Song-Lin, YAN Xi. Preparation, Characterization and Gas Responsibilities of Al Doped α-Fe2O3 [J]. Chem. J. Chinese Universities, 2007, 28(11): 2035. |
[11] | WEI Guang-Fen, TANG Zhen-An, CHEN Zheng-Hao, YU Juan, WANG Li-Ding, YAN Gui-Zhen. Studies on Blind Separation of Gas Sensor Array Signals [J]. Chem. J. Chinese Universities, 2006, 27(1): 55. |
[12] | XIAN Yue-Zhong, XUE Jian, ZHANG Wen, JIN Li-Tong, JIANG Xue-Guo, YAN Shuang-Long. Studies on a Novel Sulfur Dioxide Gas Electrochemical Sensor [J]. Chem. J. Chinese Universities, 2000, 21(9): 1375. |
[13] | WENG Wei-Zheng. NMR Study of the Reaction of Pd2X2(dpm)2 (X=NCO-,CH3CO2-,SCN-,NO2-;dpm=Ph2PCH2PPh2) Complexes with H2S [J]. Chem. J. Chinese Universities, 1994, 15(2): 173. |
[14] | ZHU Yuan-Bao, WANG Ke-Min, XU Yuan-Jin, HE Shuang-E, LI Xun . Studies on a New Fluorescence Fiber Optic Sensor for Sulfur Dioxide [J]. Chem. J. Chinese Universities, 1993, 14(4): 476. |
[15] | ZHAO Shan-Qi, ZHAO Chun, CAI Hong, XU Bao-Kun, PENG Zuo-Yan, ZHAO Mu-Yu . Preparation of LaFeO3 Nanocrystalline Thin Film and Application in the MOSFET Gas Sensor [J]. Chem. J. Chinese Universities, 1993, 14(10): 1437. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||