195 resultados para Polymer-supported
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SPIE
Silver nanocrystals modified microstructured polymer optical fibres for chemical and optical sensing
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In-fibre chemical and optical sensors based on silver nanocrystals modified microstructured polymer optical fibres (MPOFs) were demonstrated. The silver nanocrystals modified MPOFs were formed by direct chemical reduction of silver ammonia complex ions on the templates of array holes in the microstructure polymer optical fibres. The nanotube-like and nanoisland-like Ag-modified MPOFs could be obtained by adjusting the conditions of Ag-formation in the air holes of MPOFs. SEM images showed that the higher concentration of the reaction solution (silver ammonia 0.5 mol/L, glucose 0.25 mol/L), gave rise to a tubular silver layer in MPOF, while the lower concentration (silver ammonia 0.1 M, glucose 0.05 M) produced an island-like Ag nanocrystal modified MPOF. The tubular Ag-MPOF composite fibre was conductive and could be directly used as array electrodes in electrochemical analyses. It displayed high electrochemical activity on sensing nitrate or nitrite ions. The enhanced fluorescence of dye molecules was observed when the island-like Ag-modified MPOF was inserted into a fluorescent dye solution. (C) 2007 Elsevier B.V. All rights reserved.
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A kind of optical pH sensor was demonstrated that is based on a pH-sensitive fluorescence dye-doped (eosin) cellulose acetate (CA) thin-film modified microstructured polymer optical fiber (MPOF). It was obtained by directly inhaling an eosin-CA-acetic acid mixed solution into array holes in a MPOF and then removing the solvent (acetic acid). The sensing film showed different fluorescence intensities to different pH solutions in a pH range of 2.5-4.5. Furthermore, the pH response range could be tailored through doping a surfactant, hexadecyl trimethyl ammonium bromide (CTAB), in the sensing film. (c) 2007 Optical Society of America.
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A monolithic structured polymer preform was formed by in-situ chemical polymerization of high-purity MMA monomer in a home-made mould. The conditions for fabrication of the preforms were optimized and the preform was drawn to microstructured polymer optical fibre. The optical properties of the resultant elliptical-core fibre were measured. This technique provides advantages over alternative preform fabrication methods such as drilling and capillary stacking, which are less suitable for mass production. (c) 2006 Optical Society of America.
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Liquid-filled microstructured polymer optical fibers (MPOFs) as monolithic liquid-core array fiber are proposed and prepared by injecting high-refractive-index liquid into the holes array of the MPOFs. One example for potential applications is demonstrated as a new kind of coherent imaging fiber. It provides great potential for applications in chemical sensing, biosensors, and endoscopy, particularly in bifunctional detection. (C) 2009 Optical Society of America
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Ultrahigh-resolution fiber-optic image guides-fused image fiber, faceplate, and taper-were fabricated by using microstructured polymer optical fiber (MPOF) preforms composed of two polymers: polymethylmethacrylate and polystyrene. The pixel diameter in the resultant MPOF-based image guides was as small as 3 mu m. The imaging capabilities of these types of fiber-optic elements were demonstrated. (C) 2009 Optical Society of America
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本论文对聚苯乙烯颗粒用作茂金属催化剂载体方面进行了研究,重点考察了载体粒子的结构设计以及聚乙烯的粒子成核模型。此外,我们基于烯烃聚合过程中的载体破碎模型提出了制备聚合物共混物的新方法。本论文的主要工作和研究成果,急结如下:1.制备了多孔性聚苯乙烯乳胶粒,并用于负载茂金属催化剂以及乙烯聚合试验。通过与对应的实心型负载催化剂对比发现,多孔型催化剂表现出更高的活性以及聚合出形态更好的聚乙烯产物,我们用催化剂粒子的破碎模型对这种现象进行了解释。最后,通过考察载体成份在聚乙烯中的分布情况给出了多孔载体在乙烯聚合过程中破碎的证据,指出这种破碎行为是提高催化剂活性和改善聚乙烯形态的根本原因。2.制备了大孔结构以及疏松结构的聚苯乙烯树脂颗粒,并用于茂金属催化剂的负载化和乙烯聚合试验。研究了载体粒子的溶胀能力以及溶胀程度对催化剂负载量和催化剂活性的影响。结果表明,随着载体溶胀度的提高,催化剂负载量和催化剂活性都得到提高。当载体粒子充分溶胀时,大孔型和疏松型催化剂显示出很高的活性,而载体溶胀程度低时则催化剂的活性很低。实验结果证明充分溶胀的载体粒子在乙烯聚合过程中已分裂成碎片,而没有溶胀的载体粒子则不能破碎,表明载体粒子是通过溶胀过程达到破碎目的的,并因此能够提高催化剂活性和改善聚乙烯产物的形态。3.我们提出了利用多孔型聚苯乙烯微球负载茂金属催化剂催化乙烯聚合过程来原位合成聚乙烯/聚苯乙烯(PE/PS)共混材料的新方法。聚苯乙烯组分首先作为载体负载催化剂,在乙烯聚合过程中破裂成碎片而均匀的分散在聚乙烯相中。我们着重考察了载体粒子的设计以及载体的破碎效果对共混物形态结构和力学性能的影响。这种方法即使没有增容剂也可以使聚苯乙烯组分以纳米级的相尺寸分散在聚乙烯基体中,得到具有细微相形态的共混物,因而能够有效的改善材料的力学性能。
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The high glass transition temperature polymer polyetherketone doped with disperse red 13 (DR13/PEK-c) has been prepared by the spin-coating method. Through in situ second-harmonic generation, the corona poling temperature was optimized by measuring the temperature dependence of the in situ second-harmonic generation signal intensity under the poling electric field. The linear electro-optic coefficients of the poled polymer films have been determined at 632.8 nm by using a simple interferometric technique. The polymer system was measured after 13 000 h, and found that it remained at 80% of its initial value.
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A novel crosslinkable polyurethane is used as the core layer of the electro-optic(E-O) modulator. The refractive index and dispersion of this material have been detected by analyzing the F-P oscillation in transmission spectra. Calculated results from the effective index method are given to design the Mach-Zehnder and straight 5-layer ridge wave-guide device (including the metal electrodes). With light at 1.31 mum being fiber coupled into waveguide, the mode properties of these devices have been demonstrated in a micron control system. The guided mode is accordant with the theoretical analysis.
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An electrically bistable device has been fabricated using nanocomposite films consisting of silver nanoparticles and a semiconducting polymer by a simple spin-coating method. The current-voltage characteristics of the as-fabricated devices exhibit an obvious electrical bistability and negative differential resistance effect. The current ratio between the high-conducting state and low-conducting state can reach more than 103 at room temperature. The electrical bistability of the device is attributed to the electric-filed-induced charge transfer between the silver nanoparticles and the polymer, and the negative differential resistance behavior is related to the charge trapping in the silver nanoparticles. The results open up a simple approach to fabricate high quality electrically bistable devices by doping metal nanoparticles into polymer.
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The photocatalytic degradation performance of photocatalysts TiO2 supported on 13-X, Na-Y, 4A zeolites with different loading content was evaluated using the photocatalytic oxidation of dyes direct fast scarlet 4BS and acid red 3B in aqueous medium. The results showed that the best reaction dosage of TiO2-zeolite catalysts is about 2 g/l and the photocatalytic kinetics follows first order for all supported catalysts. The photocatalytic activity order of the three series catalysts is 13X type >Y type >4A type. The physical state of titanium dioxide on the supports is evaluated by X-ray photoelectron spectra (XPS), powder X-ray diffraction (XRD), BET, and FTIR. (C) 2000 Elsevier Science Ltd. All rights reserved.
Theoretical Design of Low-loss Single-Polarization Single-Mode Microstructured Polymer optical Fiber