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Molecular optical switches: Synthesis, structure, and photoluminescence of spirosila compounds

机译:分子光开关:螺旋藻化合物的合成,结构和光致发光

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摘要

Starting from a silicon dichloro substituted silole and a silacyclobutene, a series of new organosilicon-based spiro compounds was synthesized by using standard organometallic reaction procedures. The spiro compounds that combine two organic photoactive subunits at one silicon center were fully characterized by the usual analytical and spectroscopic methods, which include molecular structure determination by single-crystal X-ray analysis. Photoluminescence spectra of the compounds were recorded in the solid state and also as dilute solutions in THE Interpretation of the spectra revealed that photoluminescence in this series of compounds originated from the stilbene or its vinylogue subunits. Different linkages of these groups to the silicon atoms (cyclic or open structures, four- or five-membered cycles) strongly affected both the excitation and the emission spectra, which show different emission maxima depending on the state of the sample (solid state or in solution) and the wavelength of light used for excitation. Thus, owing to their optoelectronic properties these compounds might be useful tools for the design of sensitive sensor materials and of optical switches.
机译:从二氯硅取代的甲硅烷和硅环丁烯开始,使用标准的有机金属反应程序合成了一系列新的基于有机硅的螺环化合物。通过通常的分析和光谱方法,包括在单硅X射线分析中确定分子结构,可以充分表征在一个硅中心结合了两个有机光敏亚基的螺环化合物。化合物的光致发光光谱以固态记录,也以稀释溶液的形式记录在光谱中。光谱的解释表明,该系列化合物的光致发光源自二苯乙烯或其乙烯基类似物亚基。这些基团与硅原子的不同连接(环状或开放结构,四元或五元循环)强烈影响激发光谱和发射光谱,这取决于样品的状态(固态或固态)显示出不同的发射最大值。溶液)和用于激发的光的波长。因此,由于它们的光电特性,这些化合物可能是用于设计敏感传感器材料和光学开关的有用工具。

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