Zhang Shi-Yong, Shu Xia, Zeng Ying, Liu Qing-Yan, Du Zi-Yi, He Chun-Ting, Zhang Wei-Xiong, Chen Xiao-Ming
College of Chemistry and Chemical Engineering, MOE Key Laboratory of Functional Small Organic Molecule, Jiangxi Normal University, Nanchang, 330022, China.
College of Chemistry and Chemical Engineering, Gannan Normal University, Ganzhou, 341000, China.
Nat Commun. 2020 Jun 2;11(1):2752. doi: 10.1038/s41467-020-15518-z.
Nonlinear optical switches that reversibly convert between on/off states by thermal stimuli are promising for applications in the fields of photoelectronics and photonics. Currently one main drawback for practical application lies in the control of their switch temperature, especially for the temperature range near room temperature. By mixed melting treatment, here we describe an alloy-like nonlinear optical switch with tunable switch temperature via a dual solid solution approach within the coordination polymer system. We initially prepare a coordination polymer (i-PrNHMe)[Cd(SCN)], which functions as a high-contrast thermoresponsive nonlinear optical switch originating from a phase transition at around 328 K. Furthermore, by taking advantage of a synergistic dual solid solution effect, the melt mixing of it with its analogue (MeNHEt)[Cd(SCN)], which features an unequal anionic chain templated by an isomeric ammonium, can afford coordination polymer solid solutions with switch temperatures that are tunable in a range of 273-328 K merely by varying the component ratio.
通过热刺激在开/关状态之间可逆转换的非线性光学开关在光电子学和光子学领域具有广阔的应用前景。目前实际应用中的一个主要缺点在于对其开关温度的控制,特别是在接近室温的温度范围内。通过混合熔融处理,我们在此描述了一种在配位聚合物体系中通过双固溶体方法实现开关温度可调的类合金非线性光学开关。我们首先制备了一种配位聚合物(i-PrNHMe)[Cd(SCN)],它作为一种高对比度的热响应非线性光学开关,源于在约328 K时的相变。此外,利用协同双固溶体效应,将其与类似物(MeNHEt)[Cd(SCN)]进行熔融混合,后者具有由异构铵模板化的不等阴离子链,仅通过改变组分比例,就能得到开关温度在273 - 328 K范围内可调的配位聚合物固溶体。