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1.
合成了一系列由聚(1-乙烯基-3-乙酸烷基酯咪唑)阳离子和二(三氟甲基磺酰亚胺)阴离子(TFSI)组成的聚离子液体并进行了表征.热重分析(TGA)和电导率分析表明,在聚(甲基丙烯酸甲酯,醋酸乙烯酯)(P(MMA—VAc))基体中掺杂聚离子液体后,体系的热稳定性和离子电导率均大为改善,红外光谱(FT—IR)、示差扫描量热分析(DSC)、X射线衍射(XRD)和扫描电子显微镜(SEM)等测试结果亦可佐证.讨论了离子液体的结构以及不同种锂盐(LiC104,LiBF4,LiTFSI)对电解质性能的影响.由PIL/P(MMA—VAc)/LiTFSI组成的共混电解质膜,在可见光下透过率≥90%,可作为离子导电材料用于电致变色器件(ECD),显示了其优良的电化学性能.  相似文献   

2.
物理化学实验为各大高校本科化学教学的主干实验课程之一。虽然各高校的物理化学实验内容已十分丰富,但仍然缺乏将不同章节知识点融会贯通以及与学科前沿密切联系的综合型实验内容。我们根据南开大学郭东升教授课题组发表的一篇有关联二炔程序性响应检测胆碱酯酶的工作设计了“联二炔囊泡的光致聚合、热致变色及应用”的物理化学实验,涉及到联二炔缔合胶体的制备、联二炔的紫外光致聚合反应和聚联二炔的热致变色,进而显示其在防伪领域的潜在应用价值。希望通过此实验,使学生对物理化学中的缔合胶体、光化学、热力学、动力学等章节有更深一步的贯通性掌握,并了解自组装、光聚合、变色材料和防伪等相关研究领域的前沿动态。  相似文献   

3.
在玻璃制备过程中加入硝酸银,然后通过高温退火得到包含银纳米粒子的Er^3+掺杂锗酸盐玻璃和Eu^3+掺杂硼酸盐玻璃样品。根据Mie—Drude理论拟合了这些玻璃样品中银纳米粒子等离子体振荡吸收谱,得到了退火时间与银粒子粒径的关系。用488nm Ar^+激光器激发不同退火时间的这些玻璃样品,分别监测Er3^3+的^4S3/2-^4I15/2和Eu^3+的^5D0-^7F2的发射,发现包含银纳米粒子的玻璃样品较不包含银纳米粒子的玻璃样品,Er3^3+和Eu^3+的发射分别增强3.6和1.25倍。通过分析玻璃样品的吸收谱和发射谱,排出了表面等离子振荡引起稀土离子发射增强的可能性。对Er^3+掺杂的玻璃样品进行Judd—Ofelt理论分析,发现随着退火时间增加J-O强度参数减小,Er^3+的^4S3/2能级的辐射跃迁几率保持增加,表明引入银纳米粒子引起稀土离子周围晶体场发生变化是稀土离子发光增强的一个原因。  相似文献   

4.
合成了6种新型纳米稀土三元配合物。通过元素分析、摩尔电导、红外光谱、紫外光谱、氢谱、碳谱、热重-差热等表征,确定了该类配合物的化学组成为:RE(Glu)3ImCl3·3H2O(RE=La^3+,Nd^3+,Er^3+,Eu^3+,Y^3+,Gd^3+;Glu=L-谷氨酸;Im=咪唑),TEM电镜测试表明其有一定规则形貌,粒径在30-60 nm。通过抗菌实验对其抑菌效果进行研究,结果表明:6种纳米稀土三元配合物对大肠杆菌、金黄色葡萄球菌和白色念珠菌均有较强的抑制作用(最小抑菌浓度MIC分别约为140,100,250μg·ml^-1),属于广谱抗菌剂;抗菌效果明显优于非纳米稀土三元配合物、稀土氯化物、L-谷氨酸或咪唑。  相似文献   

5.
李钟  李强 《化学学报》2003,61(3):422-426
从构筑静电自组装聚电解质/有机染料插层蒙脱土光致变色纳米复合膜所必需 的基本纳米构件--有机染料插层蒙脱土光致变色纳米复合物的设计出发,制备了具有光致 变色功能的蒙脱土/阳离子偶氮染料(GTL)均插层纳米复合物现,插人蒙脱土层 间的GTL热稳定性大幅度提高.由于GTL在纳米受限空间的超分子有序结构共轭,使 偶氮基发生了高达91 nm的显著红移.使用该插层纳米复合物构件与阳离子聚电解 质(PDAC)通过静电自组装得到了生长均匀、排列规整有序的光致变色聚电解质/ 阳离子偶氮染料插层蒙脱土纳米复合膜.  相似文献   

6.
原位缩聚法制备了一系列(对羟基苯甲酸-对苯二甲酸-间苯二酚)(HB-TA-RES)热致液晶共聚酯与聚对苯二甲酸丁二酯-聚四亚甲基醚热塑弹性体(PBT-PTMG)复合物,并用POM,TGA,WAXD,SEM及动态应力流变仪等手段进行了表征.复合物在较宽的共聚酯含量范围(30 wt%~70 wt%)或共聚酯组成不同时(共聚酯中HB含量20 mol%~80 mol%)均具有热致液晶行为.当复合物中共聚酯含量≤50 wt%以及共聚酯中对羟基苯甲酸(HB)含量≤60 mol%时,共聚酯分子的结构更加均匀化,结晶组分的结晶行为受到限制,基体与液晶组分具有较好的复合效果,不表现明显的相分离行为.复合物与相应的纯共聚酯相比,具有较好的热稳定性;其粘度均比基体PBT-PTMG小.当复合物中共聚酯含量≥30 wt%时,其粘度下降尤为显著,表明其具有较好的加工性.  相似文献   

7.
用双(2,4,4-三甲基戊基)膦酸-Span80-甲苯乳状液膜研究了稀土离子的迁移行为。当膜相含10x10 ̄(-3)~3.0x10 ̄(-3)mol/L双(2,4,4-三甲基戊基)膦酸和2%~4%(W/V)Span80,内相含0.50~2.0mol/LHCl,外相的pH为3.5~50时,所有稀土离子都能快速并完全迁移。根据各稀土离子在此乳状液膜体系中迁移性质的差别,控制外相酸度,试验了稀土离子相互之间的分离情况。试验表明,用此乳状液膜体系分离稀土离子有良好的应用前景.  相似文献   

8.
赵丽娜  吴伟娜  袁文兵  闫兰 《应用化学》2007,24(9):1098-1100
合成了一种新的芳香族酰胺配体2,2’-(1,2-亚苯基二氧)二(N-苯基乙酰胺)及其稀土(La,Eu,Tb,Dy,Sm,Gd)硝酸盐配合物,通过核磁共振谱、元素分析、摩尔电导、红外光谱、差热等测试技术对其进行了结构表征。结果表明,稀土配合物的可能结构为:[REL(NO3)3]·H2O(RE:La^3+、Sm^3+、Eu^3+、Gd^3+、Tb^3+、Dy^3+).配合物产率约为78%。在稀土配合物中,作为抗衡阴离子的3个硝酸根均以双齿的配位方式与稀土配位,稀土配位数为10,并且还有1个结晶水。在298K下对配合物[EuL(NO3)3]·H2O和[TI)L(N03)3]·H2O的固体荧光性质进行了研究。结果发现,它们分别发射Eu^3+和Tb^3+稀土离子的特征荧光,且配合物[TbL(NO3)3]·H2O的荧光比[EuL(NO3)3]·H2O的荧光强。说明此芳香族酰胺配体敏论Tb^3+发光比敏化Eu^3+发光程度大。  相似文献   

9.
酞侧基聚芳醚砜/对苯二甲酸乙二酯-对羟基苯甲酸嵌段共聚物共混物的研究李刚,殷敬华,李滨耀(中国科学院长春应用化学研究所,长春,130022)关键词酞侧基聚芳醚砜,热致性液晶高聚物,原位复合材料,对苯二甲酸乙二酯-对羟基苯甲酸嵌段共聚物将热塑性树脂与热...  相似文献   

10.
DSC和SEM研究结果表明聚苯乙烯(PS)与一种热致液晶聚合物(LCP)(PHB/PET(60/40)共聚酯)完全不相容.共混体系具有与组分无关的Tg,并且表现出明显的两相结构.将PS进行化学改性(引入磺酸基团)制备成磺化聚苯乙烯(SPS),随中和盐离子的变化有:酸式、Li、Na、Zn和Mn盐五种形式.用DSC和SEM对LCP与SPS共混物的热性能和形态进行了分析和表征.共混体系有一个与组成相关,且明显低于纯SPS的Tg.这表明了PS与LCP的相容性因为磺酸基团的引入而得到了改善.同时用Fox方程计算了LCP的Tg.当SPS含量较低时(不大于50%)在各个共混体系中,所估算的LCP的Tg相互吻合.表明共混体系满足Fox方程的前提条件,即LCP与SPS形成相容体系.当SPS含量较低时(25%),LCP/SPS的共混物为较均一体系,断面光滑;而SPS含量较高时,在脆断面可以观察到纳米级的颗粒.电子能谱分析证明了这些颗粒是SPS负离子的聚集体.  相似文献   

11.
In this article, we demonstrate that by tethering carboxyl groups of poly(10,12-pentacosadiynoic acid) (PDA) to a poly(vinyl alcohol) (PVA) matrix, PDA, which is irreversible in its pure form, becomes reversible in the thermochromism. The tethering is realized by simple but deliberately designed processes: (1) Disperse the commercially available monomer 10,12-pentacosadiynoic acid (DA) nanocrystals in a PVA aqueous solution by the "NCCM" method invented in our laboratory. (2) Anneal and dry the mixture solution at a temperature higher than the melting point of pure DA crystal. (3) Polymerize the as-annealed DA/PVA blend films by UV irradiation. After the polymerization, PDA/PVA films with completely reversible thermochromism are obtained. The reversible PDA/PVA films can be easily dissolved in water, leading to water-dispersible nanoaggregates with the reversibility. Blends of PDA with other water-soluble polymers such as poly(ethylene oxide) (PEO), poly(acrylic acid) (PAA) and poly(allyamine) (PAM), were prepared respectively, by the same processes and under the same conditions. It is found that all these nanocomposites are irreversible or partially reversible in the thermochromism; either the relatively low glassy transition temperature of the polymer matrix (in the case of PEO) or the partial ionization nature of the polymer (in the cases of PAA and PAM) is responsible for the irreversibility or the partial reversibility.  相似文献   

12.
Polydiacetylenes (PDAs) and PDA/ZnO nanocomposites based on the monomers 10,12-pentacosadiynoic acid (PCDA), 10,12-tricosadiynoic acid (TCDA), and 10,12-docosadiynedioic acid (DCDA) monomers have been investigated for chromatic chemical sensing of a number of organic liquids. Chromatic sensitivity is associated with the interaction of the organic liquid with the PDA side chain to give rise to the strain-induced blue to red colorimetric transition. Attenuated total reflection (ATR) Fourier transform infrared (FTIR) spectroscopy demonstrated that in the PDA/ZnO nanocomposites, the PDA side chains form chelates with ZnO. The chromatic properties of PDAs and PDA/ZnO composites in organic liquids, to certain extent, depend on the side-chain length and the number of carboxylic head groups. Pure PDAs and PDA/ZnO nanocomposites in different organic liquids studied by Raman spectroscopy show that the chromatic selectivity of PDAs for certain organic liquids with respect to the blue to red phase transition is closely related to the side-chain structure of the PDAs. Moreover, the interactions are stronger with those PDAs where the blue to red transition is irreversible. Density functional theory (DFT) simulations show that the chromatic sensitivity of the PDAs toward a particular organic correlates with the C–C bond torsion angle of the PDA backbone.  相似文献   

13.
Polydiacetylene (PDA) is one kind of the conjugated polymer with layered structure, which can serve as a host to accommodate the guest components through intercalation. In these intercalated PDAs, some of them were reported to have a nearly perfect organized structure and perform completely reversible thermochromism. Till now, these reported intercalated PDAs were made by only introducing a single component for intercalation. Here, we chose 10, 12-pentacosadiynoic acid (PCDA) as the monomer, of which the carboxyl-terminal groups can interact with either Tb\begin{document}$ ^{3+} $\end{document} ions or melamines (MAs). When the feeding molar ratio of PCDA, MA, and Tb\begin{document}$ ^{3+} $\end{document} ion was 3:267:1, only Tb\begin{document}$ ^{3+} $\end{document} ions were intercalated though excess MAs existed. Such Tb\begin{document}$ ^{3+} $\end{document}-intercalated poly-PCDA exhibited completely reversible thermochromism, where almost all the carboxyl groups interacted with Tb\begin{document}$ ^{3+} $\end{document} ions to form the nearly perfect structure. When the feeding molar ratio of PCDA, MA, and Tb\begin{document}$ ^{3+} $\end{document} ion was 3:267:0.6, both Tb\begin{document}$ ^{3+} $\end{document} ions and MAs were intercalated. There existed some defects in the imperfect MA-intercalated domains and at the domain boundaries. The MA/Tb\begin{document}$ ^{3+} $\end{document}-intercalated poly-PCDA exhibits partially reversible thermochromism, where the backbones near the defects are hard to return the initial conformation, while the rest, those at nearly perfect organized domains, are still able to restore the initial conformation.  相似文献   

14.
In this contribution, we report the relationship between molecular structures of polydiacetylene (PDA) vesicles, fabricated by using three monomers, 10,12-tricosadiynoic acid (TCDA), 10,12-pentacosadiynoic acid (PCDA) and N-(2-aminoethyl)pentacosa-10,12-diynamide (AEPCDA), and their color-transition behaviors. The modification of side chain length and head group of the PDA vesicles strongly affects the colorimetric response to temperature, ethanol and pH. A shorter side chain of poly(TCDA) yields weaker inter- and intra-chain dispersion interactions in the bilayers compared to the system of poly(PCDA), which in turn results in a faster color transition upon exposure to all stimuli. A change of head group in poly(AEPCDA) slightly reduces the transition temperature. Interestingly, the colorimetric response of poly(AEPCDA) vesicles to the addition of ethanol is found to occur in a two-step fashion while the response of poly(PCDA) vesicles takes place in a one-step process. The amount of ethanol required for inducing complete color-transition of poly(AEPCDA) vesicles is also much higher, about 87% v/v. The increase of pH to ~9 and ~10 causes a color-transition of poly(TCDA) and poly(PCDA) vesicles, respectively. The poly(AEPCDA) vesicles, on the other hand, change color upon decreasing pH to ~0. The colorimetric response also occurs in a multi-step fashion. These discrepancies are attributed to the architecture of surface layers of poly(AEPCDA), constituting amine and amide groups separated by ethyl linkers.  相似文献   

15.
Thermochromism, solvatochromism, and alkalinochromism of a poly-10,12-pentacosadiynoic acid (poly(PCDA)) vesicle solution are studied by electronic absorption spectroscopy. The spectroscopic profiles reveal different sequences of side-chain movement during the chromic transitions. The gradual hypsochromic shift and reversibility of the purple solution at low temperature in the thermochromic transition indicates that the transition starts with reversible conformational alteration of methylene side chains leading to metastable purple vesicles. Further heating to 80 degrees C or higher eventually causes the hydrogen bonds at the carboxylic head groups to break and turns the vesicle solution to red. The irreversibility of the red vesicles indicates that it is the most thermodynamically stable form. In the ethanolochromism and alkalinochromism, the processes are however induced at the vesicle-media interface, directly bringing about the hydrogen bond breaking. The purple solutions observed in the ethanolochromism and alkalinochromism cannot reverse back to the blue one. The absorption spectra clearly demonstrate that they are mixtures of the blue and red vesicles.  相似文献   

16.
The applicability of model polydiacetylenes (PDAs) in hydrogen ions sensitive optodes was tested. Nanofibers mats were electrospun using a mixture of polyvinyl chloride (PVC) and polycaprolactone (PCL) together with 10, 12-tricosadiynoic acid (TCDA) or 10,12-pentacosadiynoic acid (PCDA). After the polymerization the mats were applied in colorimetric and fluorimetric pH sensors. The PDAs were formed by photopolymerization with a UV lamp (254 nm), resulting in a change of mats color from white to dark blue. The morphology of both fiber mats is similar (SEM images), and the average diameters of fibers were estimated as equal to 228±73 and 248±61 nm for TCDA and PCDA, respectively. As the pH increases, the color of the fiber mat changes from blue to red and the process can be followed visually. The result obtained by computer image analysis showed a sigmoidal increase in the intensity of red and a decrease in the intensity of blue color with increasing pH. A similar sigmoidal response is observed for the dependence of the emission intensity on the pH. Changes in the recorded signal occur in the pH range from 7 to 8.5 or from 8 to 9.5 for mats with TCDA and PCDA, respectively. Both readout modes can be successfully used for pH sensing with proposed nanofibrous mats in the range of pH close to the physiological pH range.  相似文献   

17.
We demonstrate a very convenient access to self-suspended pure poly(10,12-pentacosadiynoic acid) (PDA) nanoparticles (NPs) simply by adding the ethanol solution of diacetylene monomer to water, followed by UV irradiation. The as-obtained PDA NPs are of high purity because no any initiator, catalyst or stabilizer was used during the whole process. The stabilizer-free PDA NPs are stable in the aqueous suspension. Due to the high purity and stability, the PDA NPs can respond sensitively and selectively to lysine and arginine among 18 kinds of water soluble natural amino acids; without the competitive interaction from the stabilizer, the sensitivity was enhanced.  相似文献   

18.
A method to create assembly of polydiacetylene vesicles on solid substrates in a novel fashion is described. The formation of the assembly is based on electrostatic layer-by-layer deposition using negatively charged 10,12-pentacosadiynoic acid (PCDA) vesicles and polyelectrolyte polyethylenimine, or positively charged PCDA-2(')-aminoethylamide (PCDANH2) vesicles. This is an efficient method for preparing the chromatic sensor films of polydiacetylene vesicles after ultraviolet light irradiation. The strategy would be useful in the development of polydiacetylene-based chemosensors and biosensors.  相似文献   

19.
Achiral diacetylene 10,12-pentacosadinoic acid (PCDA) and a chiral low-molecular-weight organogelator could form co-gel in organic solvent and it could be polymerized in the presence of Zn(II) ion or in the corresponding xerogel under UV-irradiation. Optically active polydiacetylene (PDA) were subsequently obtained. Supramolecular chirality of PDA could be controlled by the chirality of gelators. Left-handed and right-handed helical fibers were obtained by using Land D-gelators in xerogels respectively, and...  相似文献   

20.
CoFe2-xRExO4(RE=Tb,Dy)纳米晶薄膜的化学合成及磁性   总被引:9,自引:0,他引:9  
以溶胶-凝胶法制备了稀土铽或镝掺杂的钴尖晶石铁氧体纳米晶薄膜.考察了Tb或Dy的掺杂量及晶化条件对晶相的影响.结果表明,稀土离子的掺杂量x超过0.3时,样品很难形成尖晶石单相.原子力显微镜对纳米晶薄膜表面形貌的观测显示,溶胶-凝胶法制备的薄膜粒度可控制在20~50nm,且具有较高的表面平整度.对于厚度为200nm的薄膜,均方根粗糙度仅为4~5nm.磁特性研究发现,掺杂Tb或Dy的样品矫顽力明显提高.  相似文献   

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