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   cyanogen, methylacetylene, hydroquinone, ethylacetylene, aniline, pyrrole, and ethanol detection by using bnnt: dft studies  
   
نویسنده mohajeri sahar ,noei maziar ,molaei nazanin
منبع iranian journal of chemistry and chemical engineering - 2017 - دوره : 36 - شماره : 5 - صفحه:89 -98
چکیده    Electrical sensitivity of a boron nitride nano tube (bnnt) was examined toward hydroquinone (c6h4(oh)2), cyanogens (c2n2), methylacetylene (c3h4), ethylacetylene (c4h6), aniline (c6h5nh2), ethanol (c2h5oh), pyrrole (c4h5n), molecules by using density functional theory (dft) calculations at the b3lyp/6-31g(d) level of theory. in considering the dsorption energy (ead) of those molecules on the bnnt are sequenced: c6h5nh2(ead= -47.55kcal/mol)> c4h5n (ead=-26.66kcal/mol) >c2h5oh(ead= -25.91kcal/mol)> (cn)2(ead=-20.70kcal/mol)> c6h4(oh)2(ead= -20.21kcal/mol) >c3h4(ead=-12.73kcal/mol)> c4h6(ead=-11.19kcal/mol). according to this comparison aniline molecule with ead=-47.55 kcal/mol has the most adsorption energy among all molecules. calculations showed that when the nanotube was doped by si and al atoms, the amount of homo/lumo energy gap (eg) reduced significantly. this reduced showed that bnnt is a suitable semiconductor after doping and the doped bnnt in the presence of those gases generates an electrical signal and therefore can be used potentially for gas sensors. recent researches demonstrate that boron nitride nanotube is a suitable adsorbent for detection and separation of those compounds.
کلیدواژه sensor ,nanotube ,dft ,bnnt
آدرس islamic azad university, ardabil branch, department of chemistry, ایران, islamic azad university, mahshahr branch, college of chemical engineering, department of chemistry, ایران, islamic azad university, omidiyeh branch, college of chemistry, omidiyeh branch, department of chemistry, ایران
 
     
   
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