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Mechanisms of stabilization in nanocomposites with gold and gallium nitride dispersed phases.

机译:金和氮化镓分散相在纳米复合材料中的稳定机理。

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The goal of this work is to synthesize and characterize a novel class of advanced polymer-matrix nanocomposites, particularly poly(methyl methacrylate) - matrix nanocomposites of gold and gallium nitride. Due to their unique interaction with light, these nanocomposites are potential materials for integrated optics. A more fundamental aspect of this study investigated the solid-liquid interface during synthesis of the particles and composites. This study included: synthesis of gold nanoparticles stabilized by unbranched alkanethiols; a synthesis of polymer-stabilized gold nanoparticles within inverse micelles; synthesis of nanostructured gallium nitride; investigation of the surface chemistry of the GaN, which is related to the physical-chemical interactions in the solid-liquid suspension; and optical characterization of the materials obtained.; Gold nanoparticles were synthesized by a phase-transfer reaction in which zerovalent gold nucleated in the presence of alkanethiols of eight, twelve, and sixteen carbons. The kinetic interplay of two processes was investigated: (i) growth of gold particles from atomic gold; and (ii) coordination of thiol groups to gold. The competition of these processes yielded sterically stabilized particles less than 10 nm in size. By studying the effect of varying the length of the alkyl group, a model was derived to describe the difference between the particle surface and the analogous gold/thiol monolayer at a flat interface. Nanostructured gold was also synthesized in situ within a poly(ethylphenol-co-hydroxythiophenol) matrix using an inverse-micelle technique.; The first synthesis of zincblende, nanostructured GaN was demonstrated by thermal decomposition of the dimeric precursor {dollar}rm Gasb2lbrack N(CHsb3)sb2rbracksb6.{dollar} A method was developed for de-agglomerating this product and preparing a PMMA-matrix nanocomposite with dispersed GaN. A mechanistic investigation of this process using diffuse-reflectance infrared Fourier-transform spectroscopy (DRIFTS) analysis suggested chemisorption plays an important role in de-agglomeration of the powder and stabilization of the resulting suspension proceeds mainly through adsorption of the acetate functionality.; Composites with dispersed gold had third-order nonlinear optical susceptibility, {dollar}chisp{lcub}(3){rcub},{dollar} of {dollar}{lcub}-{rcub}1.5times10sp{lcub}-10{rcub}{dollar} e.s.u. Gallium nitride nanocomposites exhibited {dollar}chisp{lcub}(3){rcub}{dollar} of {dollar}+2.6times10sp{lcub}-11{rcub}{dollar} e.s.u.
机译:这项工作的目的是合成和表征一类新型的高级聚合物基纳米复合材料,特别是金和氮化镓的聚(甲基丙烯酸甲酯)-基体纳米复合材料。由于它们与光的独特相互作用,这些纳米复合材料是集成光学的潜在材料。该研究的一个更基本的方面是研究颗粒和复合材料合成过程中的固液界面。这项研究包括:用支链烷硫醇稳定的金纳米颗粒的合成;反胶束中聚合物稳定的金纳米颗粒的合成;纳米氮化镓的合成研究GaN的表面化学,这与固液悬浮液中的物理化学相互作用有关;以及获得的材料的光学表征。金纳米颗粒通过相转移反应合成,其中零价金在八,十二和十六个碳的烷硫醇存在下成核。研究了两个过程的动力学相互作用:(i)从原子金中生长金颗粒; (ii)硫醇基团与金的配位。这些过程的竞争产生了尺寸小于10 nm的空间稳定颗粒。通过研究改变烷基长度的影响,推导了一个模型来描述颗粒表面与平坦界面上类似的金/硫醇单层之间的差异。还使用逆胶束技术在聚(乙基苯酚-共-羟基硫代苯酚)基质内原位合成了纳米结构的金。通过对二聚前体{rm} Gasb2lbrack N(CHsb3)sb2rbracksb6的热分解证明了闪锌矿型纳米结构GaN的首次合成。开发了一种解聚该产品并制备分散的PMMA基质纳米复合材料的方法。氮化镓使用漫反射红外傅里叶变换光谱法(DRIFTS)分析对该过程进行的机械研究表明,化学吸附在粉末的解团聚中起着重要作用,并且所得悬浮液的稳定主要通过乙酸酯官能团的吸附而进行。具有分散金的复合材料具有三阶非线性光学磁化率,{dollar} chisp {lcub}(3){rcub},{dollar}为{dollar} {lcub}-{rcub} 1.5×10sp {lcub} -10 {rcub} {美元} esu氮化镓纳米复合材料的{dol}} sp {lcub}(3){rcub} {dollar}为{dollar} + 2.6x10sp {lcub} -11 {rcub} {dollar}e.s.u。

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