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1.
以偶氮二异丁腈为引发剂,含二甲氨基查尔酮基团的三硫代碳酸酯为链转移剂,在四氢呋喃溶剂中将N-异丙基丙烯酰胺(NIPAM)通过可逆加成断裂链转移(RAFT)自由基聚合制备了具有智能荧光特性的含二甲氨基查尔酮端基的聚N-异丙基丙烯酰胺(PNIPAM-DMAC),并通过红外光谱、核磁共振氢谱和紫外-可见光谱对其结构进行表征.研究了PNIPAM-DMAC聚合物的温敏性以及溶剂极性、温度、分子识别三重敏感的荧光特性.结果表明,PNIPAM-DMAC聚合物的低临界溶解温度(LCST)比聚N-异丙基丙烯酰胺(PNIPAM)聚合物低,且随着PNIPAM-DMAC聚合物分子量的降低、聚合物水溶液浓度的减小和α-环糊精(α-CD)的加入,其LCST温度均升高.随着溶剂极性的增加,PNIPAM-DMAC聚合物的荧光峰值波长基本上随着溶剂极性的增大而红移,荧光强度出现极小值和极大值,在甲醇和水中几乎无荧光,具有溶剂极性敏感的荧光特性;随着温度升高,PNIPAM-DMAC聚合物水溶液荧光强度显著增强,同时伴随荧光发射光谱的蓝移现象,且荧光随温度交替改变而呈现出可逆变化,具有可逆的温度“开/关”特性;α-CD的添加使得PNIPAM-DMAC聚合物水溶液的荧光强度增强,荧光峰值波长轻微蓝移,具有分子识别敏感的荧光特性.  相似文献   

2.
通过合成一系列同一分子中既含有给电子性荧光生色团又含缺电子性碳碳双键的烯类单体, 发现这类单体在相同生色团浓度下的荧光强度均明显低于相应的饱和模型化合物或聚合物[1~3]. 这种现象称为荧光结构自猝灭效应(SSQE), 以区别于浓度自猝灭现象. 对于电子状态与之相反的单体, 即含受电子性荧光生色团的乙烯基醚类单体, 也观察到了SSQE[4,5]. 进一步的研究结果表明, SSQE是光照条件下分子内电子给受体之间电荷转移作用的结果, 分子中电子给受体间的间隔基长度和溶剂的性质等都对SSQE有显著的影响[6]. 以往合成的含给生色团的丙烯酰类单体, 其电子给受体间是通过饱和脂肪链相连, 当生色团和受电子性碳碳双键之间以β-二酮结构相连时, 这类单体的荧光性质如何, 是否发生SSQE是我们的关注所在. 另一方面, β-二酮类化合物在一定波长光照射条件下, 常发生烯醇式与酮式的互变异构化. 虽然已有许多文献报道有关烯醇式-酮式互变异构过程中各种光谱的变化以及用核磁、红外、紫外等光谱手段研究烯醇式-酮式互变异构动力学, 但有关β-二酮类化合物互变异构过程中荧光光谱的变化的报道却很少[7~11]. 本文合成了以β-二酮连接的含二甲氨基苯基生色团的烯类单体, 1-(4-二甲氨基苯基)-4-甲基-4-戊烯-1,3-二酮(DMPDK)及其饱和模型化合物1-(4-二甲氨基苯基)-1,3-丁二酮(DMBDK), 研究了其光谱性质及光致互变异构行为.  相似文献   

3.
通过Sonogashira偶联反应制备了含有4-[2-(对苯胺)乙烯基]苯(M1)、2,5-二戊烷氧基-1,4-二乙炔基苯(M2)和9-辛基咔唑(M3)3种结构单元的三元共轭聚合物PPEC,并通过核磁共振氢谱确定了3种结构单元的比例为0.54∶1.00∶0.46(M1∶M2∶M3).由于在PPEC的侧链中含有氨基基团,通过在PPEC的THF溶液中分别加入水、甲醇和正己烷,诱导其产生聚集,其聚集后的荧光性质表现出明显的不同,在THF与水的混合溶剂中,PPEC发光强度会随着水含量的增加先是急剧降低,而后在高水含量时发光强度又显著增强;在THF与甲醇的混合溶剂中,PPEC发光强度随着甲醇的加入只是逐渐降低;在THF与正己烷的混合溶剂中,PPEC的发光强度则会随着正己烷的增加而增强.该结果表明氨基通过与水,或者自身所形成氢键作用,改变了PPEC分子链之间的聚集态结构,降低了分子内旋转非辐射能量效率,从而有效改善共轭聚合物的主链发光性质,这为设计聚集态下(或固态下)高性能的荧光共轭聚合物提供了一种新思路.  相似文献   

4.
将自制的4,4'-二氨基二苯醚-2,2'-二磺酸基(ODADS)、 含氮杂环芳香二胺1,2-二氢-2-(4-氨基苯基)-4-[4-(4-氨基苯氧基)-苯基]-二氮杂萘-1-酮(DHPZ-DA)和1,4,5,8-萘四甲酸二酐(NTDA)进行直接缩合聚合反应, 通过改变磺化二胺单体的含量来改变聚合物的磺化度, 成功地合成了一系列高分子量的不同磺化度的六元环聚酰亚胺(SPIs), 其特性粘度在0.55-1.47 dL/g. 采用FTIR和 1H NMR技术表征了聚合物的结构. 研究了经溶液浇铸成磺化聚合物膜的理化性质. 结果表明, 随着聚合物磺化度的增大, 膜的含水率和离子交换能力增大, 尺寸稳定性、 对水的稳定性以及抗氧化性降低.  相似文献   

5.
用氧化偶联聚合法合成了主链上含β-萘烷基醚和吡啶、二烷基芴、二苯乙烯和均四甲苯的聚合物.用FT-IR和1H NMR表征了聚合物的结构.广角X射线衍射表明共聚物的结构都是非晶态的.用UV-V is表征了共聚物的吸收特征.聚合物的荧光光谱表明,含有β-萘烷基醚和吡啶的聚合物在溶液中表现为红光发射材料.含有β-萘甲醚和二苯乙烯的共聚物为黄橙光发射,通过改变单体含量也可实现红光发射.含有β-萘甲醚和二烷基芴的聚合物固体有望成为白光发射材料.  相似文献   

6.
通过单体4-[(2,5-二溴苯)乙炔基]苯胺和1,4-二乙炔基-2,5-二戊氧基苯之间的Sonogashira偶合反应合成了带有p-氨基苯乙炔基共轭侧基的聚对苯撑乙炔((PAnPE)). 该共轭聚合物的THF溶液((2××10--5 mol•·L--1))在473和519 nm处呈现两个比较强的荧光发射峰. 通过调节在聚合物PAnPE-THF溶液中所加入三种沉淀剂((甲醇、乙酸、稀盐酸溶液))的体积比例, 来改变PAnPE分子链的聚集态结构, 进而研究对其发光性能的影响规律. 实验结果表明: 由于沉淀剂与聚合物PAnPE分子链之间相互作用能力与方式的不同, PAnPE两个荧光峰的发射强度因聚合物分子链聚集结构不同而呈现不同的变化规律, 这有助于实现在化学传感器中的应用.  相似文献   

7.
用自行合成的 2-氨基噻唑 (1)、2-氨基-4-苯基噻唑 (2)、2-氨基苯并噻唑(3)等荧光小分子化合物,与商品化的苯乙烯马来酸酐共聚物 (SMA)中的酸酐基团反应,制成聚苯乙烯马来酰亚胺 (SMI),实现了SMA化学改性.在获得荧光聚合物的同时,不仅保持了原SMA的可溶性、成膜性等优点,其热性能也得到了改善.通过示差扫描量热 (DSC)、凝胶色谱 (GPC)、红外、紫外及荧光光谱等手段表征了荧光聚合物的玻璃化转变温度、分子量及结构与荧光性能关系.  相似文献   

8.
程金华  姜鸿基 《应用化学》2019,36(4):440-450
以四苯乙烯类分子2-溴-2-甲基-丙酸-3-(4-三苯乙烯基-苯氧基)-丙醇酯(E)作为引发剂,N-异丙基丙烯酰胺和苯乙烯为原料,通过活性自由基聚合,合成了末端具有聚集诱导发光(AIE)活性发光体的双亲性嵌段聚合物G。 详细研究了AIE活性引发剂E和嵌段聚合物G在不同状态下的光物理行为差异。结果表明,在相同浓度条件下,随着温度的升高,引发剂E分散液的荧光强度不断下降。 而嵌段聚合物的荧光强度先上升,当温度超过37 ℃后,嵌段聚合物的荧光强度不断下降。 同样地,通过改变引发剂E和嵌段聚合物G在四氢呋喃和水混合溶剂中的浓度发现,随着浓度的减小,引发剂E的荧光强度不断下降,而嵌段聚合物分散液在改变分散液浓度时荧光强度的变化规律和改变温度时荧光强度的变化趋势相似。 通过监控双亲性嵌段聚合物末端挂接的AIE活性发光分子发光性质的变化可以间接表征其聚集态结构的变化。  相似文献   

9.
管成飞  钱鹰 《有机化学》2014,(3):537-545
通过Heck反应合成了2个以吡啶为端基的9,10-双芳基蒽共轭分子9,10-二{4-{4-[N,N-二(4-吡啶乙烯基)苯基]氨基}苯乙烯基}蒽(4Py-PAA)和9,10-二{4-{4-[N,N-二(2-吡啶乙烯基)苯基]氨基}苯乙烯基}蒽(2Py-PAA),化合物结构经过1H NMR,13C NMR,HRMS-MALDI-TOF确证.测定了化合物在不同极性溶剂中的紫外吸收光谱、荧光光谱、荧光寿命及量子产率,测算了4Py-PAA和2Py-PAA的偶极矩.通过循环伏安法研究了它们的前线轨道能级.测定了4Py-PAA和2Py-PAA的固体荧光光谱、固体荧光量子产率及在不同含水量的水/THF混合溶液中的荧光光谱.实验发现4Py-PAA在THF溶液中发出蓝绿色荧光,固体时发出红色荧光,在含水量为70%的水/THF混合溶剂中发出黄色荧光,荧光强度是纯四氢呋喃(THF)的3倍,呈现聚集荧光增强性质.在800 nm飞秒激光下采用双光子诱导荧光参比法测定了4Py-PAA和2Py-PAA在THF溶液中的双光子吸收截面分别为193和101 GM.实验结果表明含有2位和4位吡啶端基9,10-双芳基蒽共轭分子具有良好的荧光发射性能及双光子吸收性质.  相似文献   

10.
王鹏  周黄梅  李磊  张三军 《分析试验室》2019,38(11):1257-1262
为制备一种与生物分子兼容性好并且具有较大动态检测范围的新型氧化还原探针,将氨苯乙烯类荧光分子4-[4-(二甲氨基)苯乙烯基]-1-甲基吡啶碘(p-DASPMI)嵌合到BSA中形成p-DASPMI-BSA嵌合体探针,采用稳态荧光光谱和时间分辨荧光光谱技术研究其与还原剂和氧化剂反应的荧光性质及相互作用的机理。实验表明,BSA能够感受环境的氧化还原状态,并通过p-DASPMI-BSA嵌合体探针的荧光变化来反映。在不同的氧化还原状态下,还原剂能使得探针的荧光强度增强3倍左右,平均寿命从1. 47 ns增加到2. 12 ns。而氧化剂使整个样品的荧光淬灭,平均寿命从2. 15 ns减小到1. 47 ns。时间分辨荧光数据表明氧化剂和还原剂会引起BSA的结构变化,进而影响进入BSA的p-DASPMI分子的数量,并最终影响整个体系的荧光性质。这个探针对氧化还原的动态检测范围能达到45倍左右,在研究细胞内大动态范围的氧化还原成像方面具有较好的应用前景。  相似文献   

11.
Recently, electro-switchable optical materials have attracted much attention for their promising applications in optoelectronic devices and biological analysis. The structures of active optical moieties are dominant for the resulting performance, which raises the requirement of studying their structure-property relationship. In this study, two p-phenylenediamine–based polyamides (α-HPA and β-HPA) containing α-/β-substituted pendant naphthalene were designed and synthesized to investigate the effect of two substitution sites of naphthalene on their thermal, optical, electrochemical, electrochromic, and electrofluorochromic behaviors. Quantum chemical calculations were carried out to help the analysis of the experimental results. The as-prepared polyamides both exhibited excellent solubility, thermal stabilities (no weight loss before 300 °C in air), and optical switching stability (500 cycles). Because of the more twisted conformation and stronger charge transfer effect between diphenylamine and α-substituted naphthalene, the α-HPA exhibited higher glass transition temperature, higher coloration efficiency, weaker fluorescence quantum efficiency, red-shifted emission wavelength, and rapider switching speed than the β-HPA. This study not only presents a deep understanding of substitution sites of fluorophores on the electro-switchable optical behaviors but also demonstrates the tailorability of the electrochromic/electrofluorochromic characteristics through fine structure adjustment, paving a pathway for further development of high-performance electrochromic/electrofluorochromic materials.  相似文献   

12.
介绍一个研究探索型大学化学综合性实验——新型电控荧光聚合物的合成与性能研究。内容包括电控荧光聚合物的合成及电控荧光性能的相关测试。通过本实验的实践,使学生在掌握基础理论和基本实验技能的同时,提高独立实验能力和创新意识。本实验的开展还可以使学生接触到学科的前沿领域,激发学生对科学研究的兴趣,培养学生的科研探究能力。  相似文献   

13.
The electrochromic/electrofluorochromic (EC/EFC) dual-functional polymers have gained intense attention owing to the unique electrochemically induced absorption and emission change simultaneously. Most of the efforts have recently been devoted to improving their EC/EFC performance. However, the practical application studies of the EC/EFC polymers are still in their infancy. Herein, we present a poly(amic acid) based material bearing high solid fluorescence-efficiency AIEgens and electroactive oligoaniline groups, featuring a good electrochromic performance with desirable optical contrast, high coloration efficiency, and outstanding durability. This occurs in tandem with electrofluorochromic behavior with ideal fluorescence contrast and moderate switching speed. By virtue of the versatile electrospinning technique, we manufactured a nanofibrous test strip base on the resultant polymer for glucose determination. The colorimetric/fluorometric dual-determination of glucose is carried out with an obvious color change from gray to dark green, along with a drastic fluorescence change from light to dark, which exhibits numerous advantages of easy operation, rapid detection, favorable selectivity, and unique repeated use feature. Furthermore, the nanofibrous test strips also provide reliable results in the glycosuria test. This strategy shows distinct promise for future sensing applications.  相似文献   

14.
A novel multifunctional poly(amic acid) bearing oligoaniline, fluorene groups (PAAOF) has been prepared through the one-step synthetic route. The structure of PAAOF was confirmed via nuclear magnetic resonance (NMR), Fourier-transform infrared spectra (FTIR), and gel permeation chromatography (GPC). Moreover, the electrochemical measurement results revealed that PAAOF material have an expected electrochemical activity, and good electrochromic properties with high contrast value and satisfactory coloration efficiency. The photophysical properties of the as-synthesized PAAOF at various oxidation states were studied. The results indicated that the fluorescence of PAAOF could be tuned by modulating the oxidation states of oligoaniline segments. In the fluorescence tuning, the fluorene groups are fluorophore, and the oligoaniline segments are used as regulatory unit.
Figure
A novel multifunctional poly(amic acid) containing oligoaniline and fluorene groups was synthesized. This material shows reversible electroactivity and excellent electrochromic properties. Interesting photophysical properties of the as-synthesized PAAOF at various oxidation states were found and studied in detail  相似文献   

15.
以六氯环三磷腈作为核心、 紫精为电致变色活性基, 合成了一种新型有机-无机杂化电致变色材料——六(1-乙基-4,4'-联吡啶-甲基苯氧基)环三磷腈(PHV 2+). 通过傅里叶变换红外光谱(FTIR)、 X射线衍射(XRD)及核磁共振氢谱( 1H NMR)表征了PHV 2+的结构. 优良的水溶性使得该化合物可以通过简单的方法构造一个以聚乙烯醇(PVA)为凝胶基质的电致变色水凝胶, 具有成本低廉及无毒害的优点. 以氟掺杂氧化锡(FTO)涂层玻璃作为电极材料, PHV 2+作为电致变色材料制备了PHV 2+/PVA/KCl电致变色器件(PHV 2+/PVA/KCl ECD). 该电致变色器件在2.1 V电压下由淡黄色变为紫色, 颜色变化明显, 并且该颜色变化可以循环500次; 器件在526 nm处的光学对比度达到62.19%. 良好的电致变色性质使该化合物在电致变色器件方面具有潜在应用价值.  相似文献   

16.
Three series of aromatic polyamides, polyesters, and poly(1,3,4‐oxadiazole)s containing bulky fluorene structures were prepared from 9,9‐bis(4‐carboxyphenyl) fluorene. All of the polymers were readily soluble in many organic solvents and showed useful thermal stability associated with high glass‐transition temperatures in the range of 220–366 °C. These wholly aromatic polymer films were colorless, with high optical transparency, and exhibited UV‐vis absorption bands at 266–348 nm and photoluminescence maximum bands at 368–457 nm within the purple to green region in N,N‐dimethylacetamide (DMAc) solutions. The poly(amine‐amide) Ic exhibited excellent electrochromic contrast and coloration efficiency, changing color from the colorless neutral form to green and then to the dark blue oxidized forms with good stability of electrochromic characteristics. Almost all of these wholly aromatic polymer films were colorless and showed high optical transparency. © 2007 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 45: 4352–4363, 2007  相似文献   

17.
A novel multifunctional poly(aryl ether) with both pendant oligoaniline and fluorene groups (PAE‐p‐OF) was synthesized by nucleophilic polycondensation and characterized by 1H NMR, Fourier‐transform infrared spectra, and gel permeation chromatography. The polymer showed excellent solubility in common organic solvents and good thermal stability. Electrochemical and photophysical properties were also investigated using cyclic voltammetry, UV–vis, and fluorescence spectroscopies. The obtained PAE‐p‐OF exhibits satisfactory electrochromic properties with high contrast value, acceptable coloration efficiency, and moderate switching times. Moreover, the fluorescence intensity of PAE‐p‐OF was modulated by controlling oxidation degree of oligoaniline moiety, due to the energy migration occurring between oligoaniline and fluorene groups. © 2012 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem, 2012  相似文献   

18.
Poly(2‐arylazulene‐alt‐fluorene) and poly(2‐arylazulene‐alt‐thiophene) are synthesized via Suzuki and Stille cross‐coupling polymerization, respectively, using 1,3‐dibromo‐2‐arylazulenes as monomers, which are prepared by a novel directed C?H activation method of 2‐carboxylic azulene and subsequent bromination reaction. Our study shows that functionalization at the 2‐position of azulene monomers influences polymer properties. For instance, different from electron‐withdrawing groups that discourage the protonation of azulene, electron‐donating aryl groups, however, enhances the sensitivity of response to acid. Protonation of the polymers leads to significant shifts in absorption spectra accompanying with obvious color changes from green to brown in majority cases because of the formation of poly(azulenium cation). The electrochromic properties of polymers are examined, exhibiting that nature of aryl group at the 2‐position of azulene influences the stability of their electrochromic devices.  相似文献   

19.
A novel electroactive spirocyclododecylfluorene monomer named 2,7‐bis(carbazol‐9‐yl)‐9,9′‐spiro[cyclododecane‐1,9′‐fluorene] (SFC) was synthesized and electrochemically polymerized to give a very stable multi‐electrochromic polymer (poly‐SFC). Two separate oxidation processes were observed for both SFC monomer and poly‐SFC that carries two carbazole units. The polymeric film of poly‐SFC was coated onto ITO/glass surface, and it shows different colors (transparent, yellowish green, green, and dark green) upon stepwise oxidations. An electrochromic device based on poly‐SFC was assembled in the sandwich cell configuration of ITO/poly‐SFC//gel electrolyte//PEDOT/ITO. Poly‐SFC exhibits 90% of transparency at neutral state and a high contrast ratio (ΔT = 58% at 800 nm). This device constructed from it represents a response time of about 1 s, high coloration efficiency (1377 cm2 C–1) and retained its performance by 96.4% even after 1000 cycles. Exhibiting high transparency at neutral state, reversible redox behavior, resistance to overoxidation, and especially high contrast ratio at near IR region can make poly‐SFC be useful and promising candidate for electrochromic applications despite having a relatively slow response time. © 2010 Wiley Periodicals, Inc. J Polym Sci Part B: Polym Phys, 2010  相似文献   

20.
A new rapid switching near‐IR electrochromic conjugated propeller‐shape polymer (PBTPAFL) with lower oxidation potential containing a di‐triarylamine group was synthesized via Suzuki coupling approach. The observed UV‐vis‐NIR absorption changes in the PBTPAFL film at various potentials are fully reversible and associated with strong color changes from the original light green to dark green and then to a Prussian blue. Excellent continuous cyclic stability of the electrochromic characteristics with a rapid color switching time 2.58 s and bleaching time 1.76 s was found as well. Compared with P1 and P2, the introduction of more electron‐donating propyl phenyl group in the para position of PBTPAFL lowered the oxidative potential and prevented coupling reaction during the electrochromic procedure. The high molecular weight conjugated polymer having high thermal stability with Td10 more than 450 °C has excellent solubility in common organic solvents such as NMP, THF, chloroform, toluene, xylene, and benzene at room temperature (25 °C) due to the propeller‐shape structure and long alkyl chain on fluorene. Herein, from the combination of the experimental and computational study, we proposed a mechanism on the basis of the molecular orbital theory to explain the electrochromic oxidation behavior. © 2010 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 48: 3913–3923, 2010.  相似文献   

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