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首页> 外文期刊>RSC Advances >Unraveling the effects of linker substitution on structural, electronic and optical properties of amorphous zeolitic imidazolate frameworks-62 (a-ZIF-62) glasses: a DFT study
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Unraveling the effects of linker substitution on structural, electronic and optical properties of amorphous zeolitic imidazolate frameworks-62 (a-ZIF-62) glasses: a DFT study

机译:解开接头取代对无定形沸石咪唑酯框架-62(A-ZIF-62)眼镜的结构,电子和光学性质的影响:DFT研究

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Zeolitic imidazolate frameworks (ZIFs), as one sub-family of metal–organic frameworks (MOFs), are a new class of glass formers. Among them, one termed as ZIF-62 [Zn(Im) _(2? x ) (bIm) _( x ) ], has great glass-forming ability compared with other ZIFs. Yet very few reports provide us with information about this glass from the computational point of view. In order to explore and have a deeper understanding of the effects of mixing organic ligands on the fundamental properties, we systematically investigate the electronic, intrinsic bonding and optical properties of amorphous ZIF-62 (a-ZIF-62) glass with density functional theory (DFT) calculation. Here we construct six amorphous ZIF-62 (a-ZIF-62) models with the ratio of bIm/(Im + bIm) ranging from 0 to 33.5%. These models are constructed based on a near perfect continuous random network model with over one thousand atoms originated from silica glass. They all keep a short range order but lack a long range order. As the concentration of bIm increases, our results show that the internal cohesion of a-ZIF-62 increases, indicating a strong network connectivity. Especially, for the first time we reveal that an obvious mid-band emerges in the conduction band due to the addition of bIm ligands. This further leads to alternation in the dielectric function. The calculated refractive index increases with an increase in the content of bIm ligands, which agrees well with the experimental results. The present results help us have a deeper understanding of the linker ratio effects on the various properties of amorphous ZIF glass and shed light on other ways to tune the properties of amorphous ZIF glass.
机译:沸石Imidazolate框架(Zifs),作为金属 - 有机框架(MOFS)的一个亚家族,是一类新的玻璃成型剂。其中,作为ZIF-62 [Zn(IM)_(2≤x)(Bim)_(Bim)_(x)]称为玻璃形成能力,与其他Zif相比具有很大的玻璃形成能力。然而,很少有报道为我们提供有关该玻璃的信息,从计算的角度来看。为了探索和更深入地了解将有机配体混合对基本特性的影响,我们系统地研究了无定形ZIF-62(A-ZIF-62)玻璃的电子,内在结合和光学性质,具有密度函数理论( DFT)计算。在这里,我们构建了六个非晶ZIF-62(A-ZIF-62)模型,BIM /(IM + BIM)的比率为0至33.5%。这些模型基于近乎完美的连续随机网络模型构建,具有超过二氧化硅玻璃的一千个原子。它们都保留了短距离,但缺乏漫长的秩序。随着BIM浓度的增加,我们的结果表明,A-ZIF-62的内部凝聚力增加,表示强大的网络连接。特别是,我们首次揭示由于添加BIM配体,导致在导通带中出现明显的中间带。这进一步导致介质功能中的交替。计算出的折射率随着BIM配体的含量增加而增加,这与实验结果很好。目前的结果有助于我们更深入地了解对无定形ZIF玻璃的各种性质的接头比效应,并在其他方式调整无定形ZIF玻璃的性质的其他方式。

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