密度泛函理论研究BnNn(n=1~20)团簇结构性质

Study on structures and properties of (BN)n(n=1~20) clusters using density functional theory

  • 摘要: 为了研究BnNn(n=1~20)团簇的生长规律,在B3LPY杂化泛函与6-31g(d)基组水平相结合的基础上,选用密度泛函理论(DFT)对BnNn(n=1~20)所有体系进行全局优化. 通过对BnNn(n=1~20)团簇简谐振动频率分析以及结合能计算,得出这些团簇的基态稳定结构基本参数,包括对称性、HOMO、LUMO、能隙等. 在上述研究的基础上,进一步分析它们的一阶差分能和二阶差分能,从而发现点群为TD的B16N16团簇结构在诸多BnNn(n=1~20)团簇中最稳定,并且当n=3,5,8,10,14,16,18时,团簇稳定性好;当n=2,4,6,9,12,15,17,19时,团簇稳定性相对差. IR-Raman的计算结果表明,随着n值增大,(BN)n(n=1~20)团簇的IR-Raman振动谱峰值增多. 这些团簇UV-Vis吸收光谱的研究基于含时密度泛函理论(TD-DFT),在B3LYP/6-31g(d)基组水平上采用极化连续介质模型(PCM)下进行分析. 结果显示,随着n值增大,(BN)n(n=3~20)团簇的UV-Vis吸收强度增大,ε(L/mol/cm)值增大,吸收波峰也随之增多.

     

    Abstract: To study the growth patterns of (BN)n(n=1~20) clusters, the geometrical and electronic structure of (BN)n(n=1~20) clusters are optimized by using density functional theory(B3LPY) at the 6-31g(d) level. The basic parameters of the ground-state stable structure of (BN)n(n=1~20) clusters, including symmetry, HOMO, LUMO and energy gap, are obtained by analyzing the harmonic frequencies and calculating the binding energy. On the basis of the above studies, the first-order (ΔEn) and second-order (Δ2En) differences of total energies are further analyzed, and it is found that the B16N16 clusters with TD point group is the most stable in many (BN)n(n=1~20) clusters. The cluster stability is good when n=3, 5, 8, 10, 14, 16, 18, and relatively poor when n=2, 4, 6, 9, 12, 15, 17, 19. The IR-Raman spectrums of (BN)n(n=1~20) clusters increase with the increasing of n values. Based on their geometric structures, the absorption spectrums are calculated using time-dependent density functional theory (TD-DFT) with the same basis set and employing the polarizable continuum medium model(PCM). The results show that the UV-Vis absorption intensities and ε(L/mol/cm) values of (BN)n(n=1~20) clusters increase with the increasing of n value, and the peaks of absorption waves also increasing.

     

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