تشخیص پیرول به وسیله نانو تیوب beo, مطالعات dft
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abstract
electrical sensitivity of a beryllium oxide nanotube (beont) was examined toward (c4h5n) molecule by using density functional theory (dft) calculations at the b3lyp/6-31(d) level, and it was found that the adsorption energy (ead) of pyrrole on the pristine nanotubes is a bout -48.58kcal/mol. but when nanotubes has been doped with s and p atomes , the adsorption energy changed. calculation showed that when the nanotube is doping by p, the adsorption energy is about -29.04kcal/mol and also the amount of homo/lumo energy gap (eg) will reduce significantly. beryllium oxide nanotube is not suitable adsorbent for pyrrole, but when the beont doped by p atom the amount of eg was less than pristine beont and that is a suitable semiconductor.
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Journal title:
international journal of new chemistryجلد ۱، شماره ۳، صفحات ۱۳۴-۱۴۴
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