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Synthesis and characterization of fluorescent polymer-Metal nanocomposites comprising poly(silylene-cO-silyne)s and silver nanoparticles

机译:包含聚(亚甲硅基-cO-硅炔)和银纳米粒子的荧光聚合物-金属纳米复合材料的合成与表征

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Branched organosilicon polymers of composition [(PhMeSi) x-co-(RSi)1-x]n [ x = 0.83-0.75, R = Et 3SiCH2CH2 (1), 2-FuMe2SiCH 2CH2 (Fu = Furyl, 2), n-Hex (3), Ph (4)] have been synthesized by reacting a mixture of dichloromethylphenylsilane and an appropriate trichloroorganosilane, RSiCl3 in 5:1 molar ratio with sodium dispersion in refluxing toluene (Wurtz coupling). A change in the feed ratio of Et3SiCH2CH2SiCl3 and PhMeSiCl2 monomers to 1:1 affords the polymer, [(PhMeSi) 0.55-co-(Et3SiCH2CH2Si) 0.45]n, 5, with increased domains of branching sites while the synthesis of polysilyne [Et3SiCH2CH 2Si]n, 6, involves the corresponding organotrichlorosilane as the precursor. The polysilanes, 1-4 act as excellent precursors for the reduction of silver acetate [polymer repeat unit: Ag+ = 0.10, 0.25] under mild conditions (toluene, room temperature) and afford the formation of polymer-metal nanocomposites, 1a-4a and 1b-4b containing silver nanoparticles with an average diameter of 5-7 and 8-11 nm, respectively. The optical properties and fluorescent nature of these composites as green light emitters have been studied by UV-vis and photoluminescence (PL) spectroscopy as well as confocal microscopy. The results accord the formation of silver nanoclusters in conjunction with nanoparticles. The host polymer matrix devoid of silver nanoparticles is obtained in each case by addition of a donor solvent (THF) in the composites and subsequently characterized by GPC, PL and cyclic voltammetric studies. A substantial decrease in molecular weight (Mw = 4.8-10.4 ×103) with respect to that of the corresponding parent polysilane (Mw = 9.7-21.0 x103) suggests irreversible oxidative cleavage of the skeletal backbone. The results also provide a basis to conclude that reducing action of 1-4 toward Ag(I) ions is predominantly located in the polysilyne segments leading to partial inclusion of Si-O-Si bonds in the host polymer structures. The role of polymer composition on the optical properties of silver nanoparticles has been examined by studying the nanocomposites 5a and 6a derived from the polymers, 5 and 6 respectively. The results suggest that branched polysilanes, 1-5 are unique in acting as scaffolds for fluorescent silver nanoclusters.
机译:组成[(PhMeSi)x-co-(RSi)1-x] n的支链有机硅聚合物[x = 0.83-0.75,R = Et 3SiCH2CH2(1),2-FuMe2SiCH 2CH2(Fu = Furyl,2),n-通过使二氯甲基苯基硅烷和合适的三氯有机硅烷RSiCl3以5:1的摩尔比与钠分散液在回流的甲苯中反应(Wurtz偶合),合成了Hex(3),Ph(4)]。将Et3SiCH2CH2SiCl3和PhMeSiCl2单体的进料比更改为1:1,可得到聚合物[(PhMeSi)0.55-co-(Et3SiCH2CH2Si)0.45] n,5,具有增加的分支位域,同时合成了多晶硅[Et3SiCH2CH 2Si ] n,6涉及相应的有机三氯硅烷作为前体。聚硅烷1-4是在温和条件(甲苯,室温)下还原乙酸银[聚合物重复单元:Ag + = 0.10,0.25]的极好前体,可形成聚合物-金属纳米复合材料1a-4a和1b-4b分别包含平均直径为5-7和8-11 nm的银纳米颗粒。这些复合材料作为绿色发光体的光学性质和荧光性质已通过紫外可见和光致发光(PL)光谱以及共聚焦显微镜进行了研究。结果符合银纳米团簇与纳米颗粒的形成。在每种情况下,通过在复合物中添加供体溶剂(THF)获得不含银纳米颗粒的主体聚合物基质,然后通过GPC,PL和循环伏安法研究对其进行表征。相对于相应的母体聚硅烷(Mw = 9.7-21.0 x103),分子量的大幅降低(Mw = 4.8-10.4×103)表明骨骼骨架不可逆的氧化裂解。该结果还提供了得出结论,即1-4对Ag(I)离子的还原作用主要位于聚硅氧烷链段中,从而导致主体聚合物结构中部分包含Si-O-Si键。通过研究分别衍生自聚合物5和6的纳米复合材料5a和6a,已经检验了聚合物组成对银纳米颗粒的光学性质的作用。结果表明,支链聚硅烷1-5在用作荧光银纳米簇的支架方面是独特的。

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