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1.
介绍了一种基于水杨醛希夫碱结构的荧光分子的合成方法及其聚集诱导发光(Aggregation-Induced Emission,AIE)性能研究。本实验中,学生将掌握希夫碱类化合物的制备方法、荧光的基本原理和应用,并直观了解AIE现象和传统荧光分子聚集诱导淬灭(Aggregation-Caused Quenching,ACQ)现象的差别。结合课堂教学和拓展阅读,使学生进一步了解AIE分子的结构特点和设计思路。  相似文献   

2.
荧光分子在良溶剂中基本不发光或发光较弱,而在聚集状态下发光较强的现象,称为聚集诱导发光(Aggregation-induced emission,AIE)现象,这与传统的聚集导致猝灭(Aggregation-caused quenching,ACQ)现象相反。本文研究了多苯基吡咯衍生物的结构与发光性能的关系。通过比较吡咯衍生物的单晶结构和发光性质发现扭曲的结构可以限制共轭发光基团的分子内旋转(RIR),这是产生AIE现象的主要原因。羧酸化的吡咯衍生物可以对Al3+实时、选择性检测。由DMF诱导的三苯基吡咯羧酸衍生物(TPPA)重结晶在固态时出现可控的荧光发射,它具备很好的温度选择性,响应迅速,并可以循环利用,这证明TPPA可以作为一种热响应材料用于温度监控设备中。  相似文献   

3.
为了打破传统荧光材料的聚集荧光淬灭(ACQ)的应用限制,通过共价键连接聚集诱导发光(AIE)分子与平面ACQ分子,可以构建在溶液中和固态下都具有荧光发射特性的化合物。分别通过多步反应合成了带有烷基硫醚的萘酰亚胺衍生物3和连接炔吡啶的四苯乙烯衍生物7。化合物3和化合物7通过酰胺缩合,合成了一种四苯乙烯-萘酰亚胺二联体化合物8,化合物8兼具ACQ和AIE分子的特性。结果表明:溶液状态下化合物8具有蓝色荧光发射,其最大发射峰位于452 nm,固态下为黄绿色荧光,最大发射峰位于487 nm。利用三氟乙酸对其荧光进行调控能够实现CIE色坐标为(0.33, 0.32)的单分子白光发射。  相似文献   

4.
近年来,有机聚集诱导发光(AIE)材料有效克服了传统荧光材料在固态或聚集态下荧光淬灭(ACQ)的主要缺陷,在生物探针、细胞成像、光学器件、防伪材料等方面得到了广泛研究与应用.但是,单功能的AIE材料往往满足不了科学技术发展和人们日益增长的物质生活需求.为拓展AIE材料的应用范围,多功能团组合的AIE分子的研究进一步成为...  相似文献   

5.
对于公共安全中存在的安全隐患及时检测和预防有助于保护公民的身体健康和财产安全。荧光检测技术以其优异的选择性、高的灵敏度、快的响应速度引起了广泛的研究。聚集诱导发光(AIE)材料作为一种与聚集导致发光猝灭(ACQ)材料截然相反的新兴有机荧光材料,实现了发光分子在固态或是聚集态下的高荧光量子产率。而独特的AIE特性,使其不必担心由于分子聚集导致的荧光信号的降低或猝灭,同时由于分子聚集程度的增加引起荧光颜色和强度的变化,可以被用来实现对靶标物的定性和定量分析,为荧光分析检测提供了新的思路和方案。目前基于AIE的荧光检测方法及相关技术已经被广泛应用各个领域,其中在公共安全领域的研究表现突出,并取得较高的研究成果。本文分析总结了近几年来AIE分子在公共安全领域中的应用进展,包括爆炸性物质、指纹识别、毒品检测、食品安全等方面,并对目前存在的问题和应用前景进行了总结和展望。  相似文献   

6.
正2001年,唐本忠等基于多苯环取代的噻咯衍生物在良溶剂中不发光或发光微弱,而在聚集状态下荧光大大增强的现象,率先提出了"聚集诱导发光(aggregation-induced emission,AIE)"的概念~1,经过大量实验验证和理论模拟,他们提出了分子内运动受限是导致化合物产生AIE现象的主  相似文献   

7.
聚集诱导发光(AIE)现象的发现为解决传统有机荧光分子在高浓度和聚集形态下存在的荧光猝灭问题提供了最佳方案,并实现了在光电器件、化学传感、生物成像和靶向治疗等众多领域的广泛应用。随着对AIE发光机理研究的不断深入,AIE分子体系得到了极大的扩展。其中,一类具有给体-受体结构的AIE分子能够显著降低分子能隙,使发光分子波长从可见光区(400~700 nm)延伸到近红外(NIR)区(700~1700 nm)。由于NIR发光分子在生物医学领域中的独特优势,其已成为目前AIE研究的热点。随着对NIR分子设计及应用的不断探索,附加不同功能且发光波长更长的AIE分子也被开发出来了,并实现了对生物体特定组织的NIR荧光成像、光声成像、光动力治疗和光热治疗等。本文总结了近年来具有AIE性能的NIR荧光分子的结构及其在生物医学领域的相关应用。  相似文献   

8.
聚集诱导发光分子的光电功能与器件应用   总被引:1,自引:0,他引:1  
光电功能分子通常以薄膜和聚集体的形式显示功能, 聚集诱导发光(AIE)分子体系的发现为解决固态下聚集诱导荧光猝灭(ACQ)难题提供了新的思路. 本文总结了近年来本课题组发展的一系列AIE 分子, 侧重介绍这些AIE 分子的光电功能与器件应用, 特别是在有机电致发光器件和有机激光方面的应用. AIE 材料显示非常高的电致发光效率, 在显示与白光器件方面潜力巨大. 在发展电泵有机激光方面, AIE 材料特点突出, 是最有前景的一类材料.  相似文献   

9.
光谱是探究分子间相互作用及发光机理的有效手段.本工作采用Frenkel激子模型和量子力学/分子力学(QM/MM)方法系统研究了一系列聚集诱导发光(AIE)体系和传统荧光(非AIE)体系晶态下的吸收、发射光谱.结果表明,分子内电声子耦合(λ)与分子间激子耦合(J)竞争决定了晶态聚集体的光谱特性.在室温下,当J/λ值大于约0.17时,有机分子聚集体光谱的激子耦合效应将表现明显.例如,对于面对面排列的H聚集体,只有考虑激子耦合效应的理论计算光谱才与其实验光谱吻合很好,即相较于单分子光谱的吸收蓝移、发射减弱并红移.对于AIE体系,因为其J/λ值均小于0.17,AIE聚集体光谱特征主要是由分子内电声子耦合所主导,激子耦合可以忽略不计.  相似文献   

10.
聚集诱导发光(Aggregation-Induced Emission,AIE)分子是一类在聚集状态下表现出强烈荧光而在分散状态下荧光较弱甚至无荧光的分子。自2001年首例AIE分子被发现以来,各类新型AIE分子如雨后春笋般相继被开发出来,并在有机光电材料、荧光探针、生物成像等领域表现出非常广泛的应用。其中,水杨醛缩肼就是一类合成简单、荧光强度高的典型AIE分子。本论文介绍了利用Reimer-Tiemann反应合成水杨醛,并通过与水合肼反应进一步得到水杨醛缩肼AIE分子的方法。在本实验中,学生不但练习了经典Reimer-Tiemann反应的操作方法,同时也学习了水杨醛缩肼分子的AIE特性及其产生机理。结合拓展阅读,可使学生进一步了解AIE分子的应用。  相似文献   

11.
Aggregation‐induced emission (AIE) is commonly observed for propeller‐like luminogens with aromatic rotors and stators. Herein, we report that a coumarin derivative containing a seven‐membered aliphatic ring (CD‐7) but no rotors showed typical AIE characteristics, whereas its analogue with a five‐membered aliphatic ring (CD‐5) exhibited an opposite aggregation‐caused quenching (ACQ) effect. Experimental and theoretical results revealed that a large aliphatic ring in CD‐7 weakens structural rigidity and promotes out‐of‐plane twisting of the molecular backbone to drastically accelerate nonradiative excited‐state decay, thus resulting in poor emission in solution. The restriction of twisting motion in aggregates blocks the nonradiative decay channels and enables CD‐7 to fluoresce strongly. The results also show that AIE is a general phenomenon and not peculiar to propeller‐like molecules. The AIE and ACQ effects can be switched readily by the modulation of molecular rigidity.  相似文献   

12.
Aggregation‐induced emission (AIE) is a photoluminescence phenomenon in which an AIE luminogen (AIEgen) exhibits intense emission in the aggregated or solid state but only weak or no emission in the solution state. Understanding the mechanism of AIE requires consideration of excited state molecular geometry (for example, a π twist). This Minireview examines the history of AIEgens with a focus on the representative AIEgen, tetraphenylethylene (TPE). The mechanisms of solution‐state quenching are reviewed and the crucial role of excited‐state molecular transformations for AIE is discussed. Finally, recent progress in understanding the relationship between excited state molecular transformations and AIE is overviewed for a range of different AIEgens.  相似文献   

13.
研究了6个线性共轭化合物4-丁基联苯(L1)、4,4’-二异丙基联苯(L2)、5,5’-二甲基-2,2’-联吡啶(L3)、2-([1,1’-联苯]-4-)噻吩(L4)、1,1’-联萘(L5)和5-苯基-2,2’-联噻吩(L6)的紫外-可见光谱和荧光发射光谱。结果表明,化合物L1、L2和L3均具有聚集诱导发光(AIE)性能,化合物L4、L5和L6则不具有AIE性能。该研究结果表明,二联苯(或两个简单芳杂环相连)系列化合物具有AIE性能,分子内旋转受限(RIR)是该系化合物产生AIE现象的机理。但是在二联苯的结构基础上继续增加链的长度,或者引入体积更大的芳环(萘环),化合物不再具有AIE性能。  相似文献   

14.
聚集诱导发光机理研究   总被引:5,自引:0,他引:5  
与传统荧光生色团聚集后导致荧光猝灭相反,有一类化合物在单分子状态下荧光微弱甚至观察不到荧光,而在聚集状态下荧光显著增强,这就是聚集诱导发光(AIE)现象。AIE现象独特的优越性使得众多研究组开发出越来越多的新AIE体系,其机理也被广泛而深入地研究。本文总结了目前为止已经提出的AIE机理,包括分子内旋转受限、分子内共平面、抑制光物理过程或光化学反应、非紧密堆积、形成J-聚集体以及形成特殊激基缔合物等;着重评述了目前研究最为全面、适用范围最广的分子内旋转受限机理。同时介绍了一些基于这些机理设计的新AIE体系。  相似文献   

15.
The last decade has witnessed rapid developments in aggregation‐induced emission (AIE). In contrast to traditional aggregation, which causes luminescence quenching (ACQ), AIE is a reverse phenomenon that allows robust luminescence to be retained in aggregated and solid states. This makes it possible to fabricate various highly efficient luminescent materials, which opens new paradigms in a number of fields, such as imaging, sensing, medical therapy, light harvesting, light‐emitting devices, and organic electronic devices. Of the various important features of AIE molecules, their self‐assembly behavior is very attractive because the formation of a well‐defined emissive nanostructure may lead to advanced applications in diverse fields. However, due to the nonplanar topology of AIEgens, it is not easy for them to self‐assemble into well‐defined structures. To date, some strategies have been proposed to achieve the self‐assembly of AIEgens. Herein, we summarize the most recent approaches for the self‐assembly of AIE molecules. These approaches can be sorted into two classes: 1) covalent molecular design and 2) noncovalent supramolecular interactions. We hope this will inspire more excellent work in the field of AIE.  相似文献   

16.
Aggregation-induced emission(AIE) active photochromic molecules have attracted growing attention for their versatile applications.Here we designed and synthesized five newly unsymmetrical photochromic diarylethene(DAE) dyads(BTE1-5) by connecting tetraphenylethene(TPE) and aromatic substituent via bithienylethene(BTE) bridge.The chemical structures of those compounds were identified by ^1H NMR,13C NMR and HRMS.The absorption and emission of these dyads were investigated by UV-vis and fluore scence spectroscopy,respectively.The results showed that all those compounds exhibited typically AIE or aggregation-induced emission enhancement(AIEE) characteristic.Particularly,when an aggregationcaused quenching(ACQ) fluorophore(triphenylamine) was grafted to the molecule,connecting with TPE via BTE-bridge,the ACQ phenomenon was dissipated and converted to an AIE luminophore,and those compounds exhibited photochromism upon irradiation with alternative UV and visible light.The solution or solid of those compounds showed distinctly fluorescence switching "ON" or "OFF" observation upon irradiation with alternative UV and visible light.It is interesting that BTE1 could be applied in recording and rewritable information storage,and the cyclization quantum yields could be affected by substituent significantly.  相似文献   

17.
The research of photo-responsive materials, with changed absorption and emission under light stimulus, has drawn more and more attention due to their wide applications. However, most of them suffered from the notorious aggregation-caused quenching(ACQ) effect, which often led to the unconspicuous luminescent change in photo-responsive process. To solve this problem, the strategy of combining aggregation-induced emission(AIE) and photochromic properties was utilized, which largely enriched the phenomenon and application of photo-responsive materials. This short review summarized the recent progress of photo-responsive AIE materials with changed UV absorbance or PL phenomenon under UV-irradiation, including the types of molecular structures, internal mechanisms and the practical applications. Also, some outlooks were given on the further exploration of this field at the end of this paper.  相似文献   

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