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Synthesis and infrared emissivity study of collagen-g-PMMA/Ag @TiO_2 composite

机译:胶原-g-PMMA / Ag @ TiO_2复合材料的合成及红外发射率研究

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摘要

Collagen grafted poly(methyl methacrylate) (PMMA) copolymer (collagen-g-PMMA) and TiO_2-coated Ag (Ag@TiO_2) core-shell nanoparticles were prepared by graft polymerization and water-in-oil (W/O) emulsion process, respectively, and collagen-g-PMMA/Ag@TiO_2 composite was synthesized via an ultrasonic irradiation method. Structure and thermal properties were measured with TEM, UV-vis, FT-IR, and TG/DTA. The results showed the core-shell structure with a crystalline silver core in a size range from 30 to 50 nm in diameter and a shell of amorphous TiO_2. The thickness of the shell varied with the concentration of titanium precursor from 2 to 10 nm. The interfacial interactions, such as hydrogen bonds existed between grafted collagen and Ag@TiO_2 nanoparticles and played an important role in the formation of the composite. It was found that the composite exhibited a lower infrared emissivity value in the wavelength range from 8 to 14 μm than that of pure collagen and grafted collagen as a result of strong interfacial synergism forces inside the composite.
机译:通过接枝聚合和油包水(W / O)乳液法制备了胶原接枝的聚甲基丙烯酸甲酯(PMMA)共聚物(胶原-g-PMMA)和TiO_2包覆的Ag(Ag @ TiO_2)核壳纳米粒子。分别通过超声辐照合成胶原-g-PMMA / Ag @ TiO_2复合材料。用TEM,UV-vis,FT-IR和TG / DTA测量结构和热性能。结果表明,核-壳结构具有直径为30至50nm的结晶银核和无定形TiO 2的壳。壳的厚度随钛前体的浓度在2至10 nm之间变化。接枝胶原与Ag @ TiO_2纳米粒子之间存在氢键等界面相互作用,在复合材料的形成中起着重要作用。结果发现,由于复合材料内部强大的界面协同力,复合材料在8至14μm的波长范围内的红外发射率值低于纯胶原蛋白和接枝的胶原蛋白。

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