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Selective detection of cyanogen halides by BN nanocluster: a DFT study

机译:BN纳米簇对卤化氰的选择性检测:DFT研究

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摘要

The electronic sensitivity and adsorption behavior toward cyanogen halides (X–CN; X = F, Cl, and Br) of a B12N12 nanocluster were investigated by means of density functional theory calculations. The X-head of these molecules was predicted to interact weakly with the BN cluster because of the positive σ-hole on the electronic potential surface of halogens. The X–CN molecules interact somewhat strongly with the boron atoms of the cluster via the N-head, which is accompanied by a large charge transfer from the X–CN to the cluster. The change in enthalpy upon the adsorption process (at room temperature and 1 atm) is about −19.2, −23.4, and −30.5 kJ mol−1 for X = F, Cl, and Br, respectively. The LUMO level of the BN cluster is largely stabilized after the adsorption process, and the HOMO–LUMO gap is significantly decreased. Thus, the electrical conductivity of the cluster is increased, and an electrical signal is generated that can help to detect these molecules. By increasing the atomic number of X, the signal will increase, which makes the sensor selective for cyanogen halides. Also, it was indicated that the B12N12 nanocluster benefits from a short recovery time as a sensor.
机译:利用密度泛函理论计算研究了B12N12纳米簇对卤化氰(X–CN; X = F,Cl和Br)的电子敏感性和吸附行为。预测这些分子的X头与BN团簇之间的相互作用较弱,这是因为卤素电子势能面上的正σ孔。 X-CN分子通过N头与团簇中的硼原子有很强的相互作用,并伴随着大量电荷从X-CN转移到团簇。 X = F,Cl和Br时,吸附过程(在室温和1 atm)下的焓变化分别约为-19.2,-23.4和-30.5 kJ mol -1 。吸附过程后,BN团簇的LUMO水平基本稳定,HOMO-LUMO间隙显着减小。因此,簇的电导率增加,并且产生可以帮助检测这些分子的电信号。通过增加X的原子数,信号将增加,这使传感器对卤化氰具有选择性。而且,表明B12N12纳米簇得益于作为传感器的短恢复时间。

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