首页> 外文会议> >Investigation of the sensitivity, selectivity, and reversibility of the chemically-sensitive field-effect transistor (CHEMFET) to detect NO/sub 2/, C/sub 3/H/sub 9/PO/sub 3/, and BF/sub 3/
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Investigation of the sensitivity, selectivity, and reversibility of the chemically-sensitive field-effect transistor (CHEMFET) to detect NO/sub 2/, C/sub 3/H/sub 9/PO/sub 3/, and BF/sub 3/

机译:研究用于检测NO / sub 2 /,C / sub 3 / H / sub 9 / PO / sub 3 /和BF / sub 3的化学敏感型场效应晶体管(CHEMFET)的灵敏度,选择性和可逆性/

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The sensitivity, selectivity, and reversibility of a CHEMFET gas microsensor were investigated as a function of several physical operating parameters. The CHEMFET's responses were expressed based upon the changes generated by modulating the electrical conductivity of the microsensor's thin-film, metal-doped, phthalocyanine-coated interdigitated gate electrode when exposed to a family of challenge gases. Copper phthalocyanine (CuPc) and lead phthalocyanine (PbPc) were used as the chemically-sensitive thin-films which ranged in thicknesses from 250 /spl Aring/ to 1100 /spl Aring/. The challenge gases included: nitrogen dioxide (NO/sub 2/), dimethyl methylphosphonate (C/sub 3/H/sub 9/PO/sub 3/), boron trifluoride (BF/sub 3/), methanol (CH/sub 3/OH), carbon monoxide (CO), vinyl chloride (CH/sub 2/CHCl), and trichloroethylene (C/sub 2/HCl/sub 3/). The concentrations of the gases ranged from 10 parts-per-billion (ppb) to 50 parts-per-million (ppm). Tests performed at at 22/spl deg/C and 110/spl deg/C (70/spl deg/C for the latter four gases) revealed that CuPc was more sensitive to C/sub 3/H/sub 9/PO/sub 3/ and BF/sub 3/, whereas PbPc was more sensitive to NO/sub 2/, CH/sub 3/OH, CO, CH/sub 2/CHCl, and C/sub 2/HCl/sub 3/. The CHEMFET was also moderately selective when challenged with several binary challenge gas mixtures. The metal-doped phthalocyanine thin films were most selective to NO/sub 2/, followed by C/sub 3/H/sub 9/PO/sub 3/. The CHEMFET was not as selective for BF/sub 3/ when combined with several other challenge gases. The CHEMFET was totally reversible for both thin-film candidates and all challenge gases.
机译:CHEMFET气体微传感器的灵敏度,选择性和可逆性是几个物理操作参数的函数。 CHEMFET的响应是根据暴露于一系列挑战气体中时调制微传感器的薄膜,金属掺杂,酞菁涂层的叉指式栅电极的电导率所产生的变化来表示的。铜酞菁(CuPc)和铅酞菁(PbPc)被用作化学敏感薄膜,其厚度范围为250 / spl Aring /至1100 / spl Aring /。挑战气体包括:二氧化氮(NO / sub 2 /),甲基膦酸二甲酯(C / sub 3 / H / sub 9 / PO / sub 3 /),三氟化硼(BF / sub 3 /),甲醇(CH / sub 3 / OH),一氧化碳(CO),氯乙烯(CH / sub 2 / CHCl)和三氯乙烯(C / sub 2 / HCl / sub 3 /)。气体的浓度范围从十亿分之十(ppb)到十亿分之五十(ppm)。在22 / spl deg / C和110 / spl deg / C(后四种气体为70 / spl deg / C)下进行的测试表明,CuPc对C / sub 3 / H / sub 9 / PO / sub更加敏感3 /和BF / sub 3 /,而PbPc对NO / sub 2 /,CH / sub 3 / OH,CO,CH / sub 2 / CHCl和C / sub 2 / HCl / sub 3 /更敏感。当用几种二元激发气体混合物激发时,CHEMFET也具有中等选择性。掺杂金属的酞菁薄膜对NO / sub 2 /的选择性最高,其次是C / sub 3 / H / sub 9 / PO / sub 3 /。当与其他几种挑战性气体结合使用时,CHEMFET对BF / sub 3 /的选择性不高。对于薄膜候选物和所有挑战性气体,CHEMFET都是完全可逆的。

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