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A combined spectroscopic and TD-DFT case study was performed, to identify a robust method to calculate the complex near UV/Vis absorption spectra of various amino- vs. nitro-substituted 2,4-diphenylquinolines, which vary strongly under neutral and successively acidic conditions. For this, different DFT functionals were tested for geometry optimization and the TD part to calculate the neutral and different protonated species in a fast screening approach, i. e. using single point calculations in an implicit solvent. Offset-corrected M06HF, hitherto only applied to polymers, was identified as a suitable method to reproduce the absorption spectra in a reasonable fashion for all different substitution pattern and all different protonated species at different pH values; moreover, the method properly predicts the energetic ordering of low-lying n-π* and ππ* transitions, which is decisive for the non-/emissive nature of the different compounds. In all, this might provide a valuable tool for computer-aided design of related classes of compounds.  相似文献   
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Differently 5-substituted 8-methoxypsoralens can be synthesized by an efficient synthetic route with various cross-coupling methodologies, such as Suzuki, Sonogashira and Heck reaction. Compared to previously synthesized psoralens, thereby promising daylight absorbing compounds as potentially active agents against certain skin diseases can be readily accessed. Extensive investigations of all synthesized psoralen derivatives reveal fluorescence in the solid state as well as several distinctly emissive derivatives in solution. Donor-substituted psoralens exhibit remarkable photophysical properties, such as high fluorescence quantum yields and pronounced emission solvatochromicity and acidochromicity, which were scrutinized by Lippert–Mataga and Stern–Volmer plots. The results indicate that the compounds exceed the limit of visible light, a significant factor for potential applications as an active agent. In addition, (TD)DFT calculations were performed to elucidate the underlying electronic structure and to assign experimentally obtained data.  相似文献   
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The photochromic and acidochromic shifts undergone by recently synthesized diarylethene photochromes have been simulated using a Time‐Dependent Density Functional Theory approach relying on a range‐separated functional, namely CAM‐B3LYP. The selected approach is generally accurate for reproducing the variations of the spectral features, though acidochromic shifts are clearly more challenging than their photochromic counterparts. More importantly, an analyzis of the shapes of the relevant molecular orbitals grants insights into the electro‐cyclization of several diarylethenes, therefore partly allowing to understand the presence of experimental deadlocks. © 2011 Wiley Periodicals, Inc. Int J Quantum Chem, 2012  相似文献   
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A nitrospiropyran, which was modified with a cadaverine‐derived anchor, was investigated with respect to its thermally induced isomerizations, hydrolytic stability of the merocyanine form, and photochromic ring closure. The host–guest complexation of the anchor by the cucurbit[7]uril macrocycle, evidenced by absorption titration, NMR spectroscopy, and electrospray ionization mass spectrometry, produced significant improvements of the switching properties of the photochrome: 1) appearance of the merocyanine form about 70 times faster, 2) practically unlimited hydrolytic stability of the merocyanine (two and a half days without any measureable decay), and 3) fast, clean, and fatigue‐resistant photoinduced ring closure back to the spiro form. The importance of an adequate molecular design of the anchor was demonstrated by including control experiments with spiropyrans with a shorter linker or without such structural asset.  相似文献   
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本文合成了氟代萘乙烯基苯并唑BO1N4F和氟代萘乙烯基苯并噻唑BT1N4F,二者在紫外光照下可发生拓扑[2+2]环加成反应,生成的主产物为β-型二聚体.由于前者的光化学反应效率高于后者,因此,BO1N4F的光二聚反应导致晶体内部产生较大的张力.当累积在棒状晶体中的张力快速释放时,晶体发生爆裂,产生的碎片跳离原位置;当累积在针状晶体中的张力缓慢释放时,晶体发生显著的背光弯曲.此外,光二聚反应将平面形二芳基乙烯分子转化为蝴蝶形环丁烷衍生物,共轭分子的去平面化导致基于二聚体D-BO1N4F的薄膜对三氟乙酸蒸气的检测限低于薄膜BO1N4F.可见,光诱导[2+2]环加成反应不仅能改善二芳基乙烯衍生物在薄膜中的荧光传感性能,而且是分子晶体产生光机械效应的驱动力.  相似文献   
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A smart acidochromic agarose‐based film with 1,4‐bis(para‐hydroxystyryl)benzene as the pH‐responsive fluorophore was prepared. This film can simultaneously harness the chemical potential of light and aerial humidity gradients to convert them into mechanical work. The strong reversible hygroscopicity of the agarose matrix induces swift locomotion by mechanical deformation owing to exchange of water with the surroundings. Driven by humidity, a 20 mg composite film coupled to a piezoelectric bending transducer sensor generates a peak output of approximately 80 mV, which corresponds to a power density of 25 μW kg?1. Excitation with UV light triggers isomerization of the chromophore, which appears as reshaping by spiraling, bending, or twisting of the film. The material also responds to changes in the pH value by reversible protonation of the fluorophore with rapid changes in color and fluorescence. The threefold sensing capability of this smart material could be utilized for the fabrication of multiresponsive actuating dynamic elements in biomedicine and soft robotics.  相似文献   
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