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Calculated photo-isomerization efficiencies of functionalized azobenzene derivatives in solar energy materials: azo-functional organic linkers for porous coordinated polymers

机译:太阳能材料中官能化偶氮苯衍生物的光致异构化计算效率:用于多孔配位聚合物的偶氮官能有机连接剂

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Recently, we used a local orbital density functional theory code called FIREBALL, to study the photoisomerization process in azobenzene derivatives for solar energy materials. Azobenzene functional groups undergo photoisomerization upon light irradiation or application of heat. Zhou et al (2012 J. Am. Chem. Soc. 134 99-102) showed that these azobenzenes can then be introduced into metal-organic frameworks via an organic linker in order to create a reversible switch for CO2 adsorption. In this manuscript, we examined how the addition of organic linkers (isophthalic acid) changes the relaxation times, isomerization mechanism, and quantum yield for both the cis. trans pathways. We then tuned these properties by substituting functional groups, finding an increase in quantum yield as well as improved optical properties.
机译:最近,我们使用称为FIREBALL的局部轨道密度泛函理论代码研究了太阳能材料偶氮苯衍生物中的光致异构化过程。偶氮苯官能团在光照射或加热时会发生光异构化。 Zhou等人(2012 J. Am。Chem。Soc。134 99-102)显示,这些偶氮苯可随后通过有机连接基引入金属-有机骨架中,以产生可逆的CO2吸附开关。在本手稿中,我们研究了有机连接基(间苯二甲酸)的添加如何改变两个顺式的弛豫时间,异构化机理和量子产率。反式途径。然后,我们通过取代官能团调整了这些性质,发现量子产率的提高以及光学性质的提高。

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