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首页> 外文期刊>Journal of Solid State Chemistry >Optically active substituted polyacetylene@carbon nanotube hybrids:Preparation, characterization and infrared emissivity property study
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Optically active substituted polyacetylene@carbon nanotube hybrids:Preparation, characterization and infrared emissivity property study

机译:光学活性取代的聚乙炔@碳纳米管杂化物:制备,表征和红外发射特性研究

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摘要

Optically active substituted polyacetylene@multiwalled carbon nanotubes (SPA@MWCNTs) nano hybrids were fabricated by wrapping helical SPA copolymers onto the surface of modified nanotubes through ester bonding linkage. SPA copolymer based on chiral phenylalanine and serine was pre-polymerized by a rhodium zwitterion catalyst in THF,and evidently proved to possess strong optical activity and adopt a predominately one-handed helical conformation. Various characterizations including Fourier transform infrared spectroscopy (FT-IR), X-ray photoelectron spectroscopy (XPS), X-ray diffraction (XRD), and transmission electron microscopy (TEM) demonstrated that the SPA had been covalently grafted onto the nanotubes without destroying their original graphite structure. The wrapped SPA was found to exhibit an enhancement in thermal stability and still maintained considerable optical activity after grafting. The infrared emissivity property of the nanohybrids at 8-14 μm was investigated in addition. The results indicated that the SPA@MWCNTs hybrid matrix could possess a much lower infrared emissivity value (ε=0.707) than raw MWCNTs, which might be due to synergistic effect of the unique helical conformation of optically active SPA and strengthened interfacial interaction between the organic polymers and inorganic nanoparticles.
机译:光学活性取代的聚乙炔@多壁碳纳米管(SPA @ MWCNTs)纳米杂化物是通过将螺旋SPA共聚物通过酯键键合包裹在改性的纳米管表面而制成的。基于手性苯丙氨酸和丝氨酸的SPA共聚物通过铑两性离子催化剂在THF中预聚合,并被证明具有很强的光学活性,并主要采用单手螺旋构象。包括傅立叶变换红外光谱(FT-IR),X射线光电子能谱(XPS),X射线衍射(XRD)和透射电子显微镜(TEM)在内的各种表征表明SPA已被共价接枝到纳米管上而不破坏他们原来的石墨结构。发现包裹的SPA显示出热稳定性的增强,并且在接枝后仍保持相当大的光学活性。此外,还研究了纳米杂化物在8-14μm的红外发射率。结果表明SPA @ MWCNTs杂化基质的红外发射率值(ε= 0.707)比未加工的MWCNTs低得多,这可能是由于光学活性SPA独特的螺旋构象的协同效应以及有机物之间的界面相互作用增强所致。聚合物和无机纳米粒子。

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