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首页> 外文期刊>Angewandte Chemie >Reversible Single-Crystal-to-Single-Crystal Photochemical Formation and Thermal Cleavage of a Cyclobutane Ring
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Reversible Single-Crystal-to-Single-Crystal Photochemical Formation and Thermal Cleavage of a Cyclobutane Ring

机译:环丁烷环的可逆单晶至单晶光化学形成和热裂解

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摘要

A [2+2] cyeloaddition reaction has been observed in a number of solids. The cyclobutane ring in a photodimerized material can be cleaved into olefins by UV light and heat. The high thermal stability of the metal-organic salt K2SDC (H2SDC = 4,4'-stilbenedicarboxylic acid) has been successfully utilized to investigate the reversible cleavage of a cyclobutane ring. The two polymorphs of K2SDC undergo reversible cyclobutane formation by UV light and cleavage by heat in cycles. Of these, one polymorph retains its single-crystal nature during the reversible processes. Polymorphs are known to show different physical properties and chemical reactivities. This work reveals that the retention of single-crystal nature is strongly associated with the packing of molecules, which is controlled by kinetics and thermodynamics. The photoemissive nature of the products makes this as a promising material for photoswitches and optical data storage devices.
机译:在许多固体中已经观察到[2 + 2]环加成反应。光二聚材料中的环丁烷环可通过紫外线和热裂解为烯烃。金属有机盐K2SDC(H2SDC = 4,4'-二苯乙烯二羧酸)的高热稳定性已成功用于研究环丁烷环的可逆裂解。 K2SDC的两个多晶型物通过紫外光经历可逆的环丁烷形成,并通过循环热裂解。其中,一种多晶型物在可逆过程中保持其单晶性质。已知多晶型物显示出不同的物理性质和化学反应性。这项工作表明,单晶性质的保留与分子的堆积紧密相关,这由动力学和热力学控制。产品的光电发射特性使其成为光开关和光学数据存储设备的有前途的材料。

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