采用半经验的Austin Model 1(AM1)方法,计算了齐分子Poly(Thienylene Vinylene)(PTV)的中性态和掺杂态的几何结构特性。与中性态相比,带电态下齐分子PTV的几何结构表现在C-C键键长发生显著的变化,单电荷掺杂导致极化子元激发;双电荷掺...采用半经验的Austin Model 1(AM1)方法,计算了齐分子Poly(Thienylene Vinylene)(PTV)的中性态和掺杂态的几何结构特性。与中性态相比,带电态下齐分子PTV的几何结构表现在C-C键键长发生显著的变化,单电荷掺杂导致极化子元激发;双电荷掺杂产生双极化子元激发,即使增加链长,仍在链中产生双极化子而不是两个分立的单极化子;掺杂4个电荷时,在齐分子PTV链中产生两个分立的双极化子。展开更多
Disintegration or redispersion of supported sintered gold nanoparticles (Au NPs) in the presence of alkyl halide can give catalyst regeneration or redispersion of sintered Au catalysts. The selectivity of alkyl hali...Disintegration or redispersion of supported sintered gold nanoparticles (Au NPs) in the presence of alkyl halide can give catalyst regeneration or redispersion of sintered Au catalysts. The selectivity of alkyl halides, temperature and size distributions were investigated to elucidate the redispersion of Au NPs during halide-induced decomposition. This study proved that the alkyl halide induced the redispersion of sintered Au NPs which depended on the R-X (X = I, Br, CI) bond dissociation energy (BDE) and thus provided a simple descriptor for the regeneration of inactive supported Au cata- lysts. A correlation between the BDE of R-X and dispersion efficiency was established. The tendency for disintegration and redispersion followed the R-X BDE of the alkyl halide. Compared to alkyl chlorides and bromides, iodides were more efficient for redispersing sintered Au NPs. As a descriptor, the BDE of R-I played a crucial role in particle redispersion. These findings provided in- sights into the mechanism of organic halide-induced Au NP disintegration and the effect of the hal- ide type on the redispersion of sintered catalysts.展开更多
文摘采用半经验的Austin Model 1(AM1)方法,计算了齐分子Poly(Thienylene Vinylene)(PTV)的中性态和掺杂态的几何结构特性。与中性态相比,带电态下齐分子PTV的几何结构表现在C-C键键长发生显著的变化,单电荷掺杂导致极化子元激发;双电荷掺杂产生双极化子元激发,即使增加链长,仍在链中产生双极化子而不是两个分立的单极化子;掺杂4个电荷时,在齐分子PTV链中产生两个分立的双极化子。
基金The project was supported by the National Natural Science Foundation of China(20903075)Program of Introducing Talents of Discipline to Universities,China(111 Project)(B08040)~~
文摘Disintegration or redispersion of supported sintered gold nanoparticles (Au NPs) in the presence of alkyl halide can give catalyst regeneration or redispersion of sintered Au catalysts. The selectivity of alkyl halides, temperature and size distributions were investigated to elucidate the redispersion of Au NPs during halide-induced decomposition. This study proved that the alkyl halide induced the redispersion of sintered Au NPs which depended on the R-X (X = I, Br, CI) bond dissociation energy (BDE) and thus provided a simple descriptor for the regeneration of inactive supported Au cata- lysts. A correlation between the BDE of R-X and dispersion efficiency was established. The tendency for disintegration and redispersion followed the R-X BDE of the alkyl halide. Compared to alkyl chlorides and bromides, iodides were more efficient for redispersing sintered Au NPs. As a descriptor, the BDE of R-I played a crucial role in particle redispersion. These findings provided in- sights into the mechanism of organic halide-induced Au NP disintegration and the effect of the hal- ide type on the redispersion of sintered catalysts.