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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Unusual fluorescent photoswitching of imidazole derivatives: the role of molecular conformation and twist angle controlled organic solid state fluorescence
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Unusual fluorescent photoswitching of imidazole derivatives: the role of molecular conformation and twist angle controlled organic solid state fluorescence

机译:咪唑衍生物的不寻常荧光光学开养:分子构象和扭曲角度控制的有机固态荧光的作用

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Molecular photoswitching, light induced reversible color/fluorescence modulation, has mostly been realized in organic molecules via E/Z isomerization of azobenzenes and stilbenes and ring opening/closing reactions of spiropyrans and diarylethenes. We report here new fluorescent molecular photoswitches based on triphenylamine (TPA)-imidazole derivatives, N-phenyl-N-(4-(1,4,5-triphenyl-1H-imidazol-2-yl)phenyl)benzenamine (NTPB) and N-phenyl-N-(4-(1-phenyl-1H-phenanthro[9,10-d]imidazol-2-yl)phenyl)benzenamine (NPPB), that exhibited light induced reversible fluorescence switching via conformational change from a twisted molecular structure to more planar. NTPB and NPPB in CHCl3 showed red shift of absorption and fluorescence upon UV light irradiation whereas white light exposure reversed both absorption as well as fluorescence. The role of the TPA-imidazole twisted molecular structure in photoswitching was established based on structure property, computational and photophysical studies. The isobestic point observed in time dependent fluorescence change under UV light irradiation clearly demonstrated the presence of two different conformational isomers. Interestingly, polymorphism and torsion angle () dependent fluorescence of NTPB and NPPB in the solid state also supported the role of the twisted molecular structure of TPA-imidazole in fluorescence switching/tuning. Interestingly, NTPB showed fluorescence photoswitching in the solid state also whereas rigid phenanthrene based NPPB did not show fluorescence photoswitching. Thus the present studies provide structural insight for designing a new type of fluorescent organic molecular photoswitches based on conformational modulation that could be of potential interest in optoelectronic devices.
机译:分子光学开关,光诱导可逆颜色/荧光调制,主要通过偶氮苯基和斯蒂芬内纳的E / Z异构化和螺丝吡喃和二芳烯酮的环形开启/闭合反应的有机分子中实现。我们在这里报告基于三苯胺(TPA) - 咪唑衍生物,N-苯基-N-(4-(1,4,5-三苯基-1H-咪唑-2-基)苯基)苯并胺(NTPB)和的新的荧光分子照片N-苯基-N-(4-(1-苯基-1H-菲拉米[9,10-D]咪唑-2-基)苯基)苯甲酰胺(NPPB),其通过扭曲的构象变化表现出光诱导的可逆荧光切换分子结构更加平坦。 NTPB和NPPB在CHCL3中显示出UV光照射时的吸收和荧光的红色变化,而白光曝光逆转吸收和荧光。基于结构性能,计算和光物理研究,建立了TPA-咪唑扭曲分子结构在光学开关中的作用。在紫外光照射下随着时间依赖性荧光变化观察到的异常点清楚地证明了两种不同的构象异构体的存在。有趣的是,固态中NTPB和NPPB的多态性和扭转角()依赖性荧光也支持TPA-咪唑在荧光切换/调谐中的扭曲分子结构的作用。有趣的是,NTPB在固态中显示出荧光光学开养,而刚性的菲肾上腺素的NPPB没有显示出荧光光学开养。因此,本研究提供了基于构象调制来设计新型荧光有机分子照片开关的结构洞察,这可能对光电器件潜在的兴趣。

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