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首页> 外文期刊>The Journal of Chemical Physics >Experimental and theoretical study of the absorption properties of thiolated diamondoids
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Experimental and theoretical study of the absorption properties of thiolated diamondoids

机译:硫醇化类金刚石吸收特性的实验和理论研究

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摘要

Nanoscale hybrid systems are a new class of molecular aggregates that offer numerous new possibilities in materials design. Diamondoid thiols are promising nanoscale building blocks for such hybrid systems. They allow the incorporation of functional groups and the investigation of their effects on the unique materials’ properties of diamondoids. Here we combine experimental data with ab initio theory to explore the optical properties of diamondoid thiols and their dependence on size and shape. Agreement between theoretically and experimentally obtained absorption spectra allows the identification of the nature of the optical transitions that are responsible for some photophysical and photochemical processes. We show that the optical properties of diamondoid thiols in the deep UV regime depend on the functionalization site but are largely size independent. Our findings provide an explanation for the disappearance of diamondoid UV photoluminescence upon thiolation for smaller diamondoids. However, our theoretical results indicate that for larger diamondoid thiols beyond the critical size of six diamondoid cages the lowest energy transitions are characterized by diamondoidlike states suggesting that UV luminescence may be regained.
机译:纳米级混合系统是一类新型的分子聚集体,为材料设计提供了许多新的可能性。类金刚石硫醇是用于这种混合系统的有希望的纳米级结构单元。它们允许引入官能团,并研究它们对类金刚石独特材料性质的影响。在这里,我们将实验数据与从头算理论相结合,以探索类金刚石硫醇的光学性质及其对尺寸和形状的依赖性。理论上和实验上获得的吸收光谱之间的一致性允许鉴定负责某些光物理和光化学过程的光学跃迁的性质。我们表明,在深紫外区域,类金刚石硫醇的光学性质取决于功能化位点,但在很大程度上与尺寸无关。我们的发现为较小的类金刚石在巯基化时类金刚石紫外光致发光的消失提供了解释。但是,我们的理论结果表明,对于超过六个类金刚石笼子临界尺寸的较大类金刚石硫醇,最低能级跃迁的特征是类金刚石状态,表明可以恢复紫外线。

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