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Two-Dimensional Nonlinear Optical Switching Materials: Molecular Engineering toward High Nonlinear Optical Contrasts

机译:二维非线性光学开关材料:高非非线性光学对比的分子工程

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Combining photochromism and nonlinear optical (NLO) properties of molecular switches-functionalized self-assembled monolayers (SAMs) represents a promising concept toward novel photonic and optoelectronic devices. Using second harmonic generation, density functional theory, and correlated wave function methods, we studied the switching abilities as well as the NLO contrasts between different molecular states of various fulgimide-containing SAMs on Si(111). Controlled variations of the linker systems as well as of the fulgimides enabled us to demonstrate very efficient reversible photoinduced ring-opening/closure reactions between the open and closed forms of the fulgimides. Thus, effective cross sections on the order of 10(-18) cm(-2) are observed. Moreover, the reversible switching is accompanied by pronounced NLO contrasts up to 32%. Further molecular engineering of the photochromic switches and the linker systems may even increase the NLO contrast upon switching.
机译:结合光学变色和非线性光学(NLO)分子开关 - 官能化的自组装单层(SAMS)的特性代表了朝着新颖的光子和光电器件的有希望的概念。 利用二次谐波产生,密度函数理论和相关波函数方法,我们研究了Si(111)上各种含量的各种含量的SAM的不同分子状态与NLO对比。 链接系统以及施肥的控制变化使我们能够在ulgimides的开放和封闭形式之间表现出非常有效的可逆光诱导的环开/闭合反应。 因此,观察到约10(-18)厘米(-2)的有效横截面。 此外,可逆切换伴随着明显的NLO对比度高达32%。 进一步的光致变色开关和接头系统的分子工程甚至可以在切换时增加NLO对比度。

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