(For USM Staff/Student Only)

EngLib USM > Ω School of Chemical Engineering >

Sno2 sensing material using spin coating technique/Christine Huan Sinwei

Sno2 sensing material using spin coating technique_Christine Huan Sinwei_K4_2011_875003868_NI
Pelet bermangkin berasaskan SnO2 disediakan dengan kaedah sol gel penglitupan putaran dan dicirikan dengan pembelauan sinar-X (XRD) dan pengimbasan mikroskop elektron (SEM). Sebelum pengukuran sensor gas, perisian LABVIEW telah digunakan untuk mendapatkan semua nilai rintangan yang telah diukurkan atas pelet bermangkin. Perubahan rintangan elektrikal oleh pelet bermangkin dikajikan dengan menggunakan etanol dalam udara pada suhu 300-500°C. Berdasarkan keputusan SEM, filem sensor terdiri daripada zarah-zarah SnO2 yang padat dan zarah-zarah ini telah menutup substrat alumina. Walau bagaimanapun, zarah-zarah SnO2 ini tidak dapat menutup substrat alumina dengan serata. Ketebalan filem dan suhu akan mempengaruhi kepekaan pelet bermangkin terhadap etanol. Pelet bermangkin yang mempunyai 5 kali lapisan telah menunjuk kepekaan yang terbaik terhadap 500 ppm etanol dengan kepekaan 81.84 pada suhu 400°C. ___________________________________________________________________________________ Tin oxide, SnO2 catalytic pellets were developed by sol-gel spin-coating method and characterized by X-ray diffraction (XRD) and scanning electron microscope (SEM). Prior the sensor measurement, LABVIEW software was programmed to interface with the electrometer to get all measured electrical resistance values. The electrical resistance change of the catalytic pellets was investigated using ethanol vapor in the air at the temperature between 300-500°C. As observed by SEM, the films consisted of dense stack SnO2 particle and covered large grains of the alumina substrate but the SnO2 particle cannot dispersed uniformly. Gas sensing properties were strongly dependent on the film thickness and temperature. The sensor pellet showed excellent performances toward 500 ppm ethanol with 5 times coating at 400°C with sensitivity value of 81.84.
Contributor(s):
Christine Huan Sinwei - Author
Primary Item Type:
Final Year Project
Identifiers:
Accession Number : 875003868
Language:
English
Subject Keywords:
Tin oxide, SnO2 catalytic pellets ; sol-gel spin-coating ; X-ray diffraction (XRD)
First presented to the public:
4/1/2011
Original Publication Date:
8/26/2020
Previously Published By:
Universiti Sains Malaysia
Place Of Publication:
School of Chemical Engineering
Citation:
Extents:
Number of Pages - 77
License Grantor / Date Granted:
  / ( View License )
Date Deposited
2020-08-27 17:09:17.555
Submitter:
Nor Hayati Ismail

All Versions

Thumbnail Name Version Created Date
Sno2 sensing material using spin coating technique/Christine Huan Sinwei1 2020-08-27 17:09:17.555