首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Influence of Single-Walled Carbon Nanotubes Enriched in Semiconducting and Metallic Tubes on the Vibrational and Photoluminescence Properties of Poly(para-phenylenevinylene)
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Influence of Single-Walled Carbon Nanotubes Enriched in Semiconducting and Metallic Tubes on the Vibrational and Photoluminescence Properties of Poly(para-phenylenevinylene)

机译:半导体和金属管中富集的单壁碳纳米管对聚对苯撑乙烯撑的振动和光致发光性能的影响

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摘要

A new synthesis method based on the electrochemical reduction of alpha,alpha,alpha',alpha'-tetrabromo-p-xylene in the presence of single-walled carbon nanotubes (SWNTs) is used to obtain composites of carbon nanotubes (CNTs) functionalized with poly(para-phenyl-enevinylene) (PPV). To separate the effects of metallic and semiconducting CNTs on their interaction with PPV, the experiments are carried out with SWNTs enriched in semiconducting (S, 99%) and metallic (M, 98%) tubes. Significant changes in the relative intensity and shift of the radial breathing vibrational mode are reported in the Raman spectra of the as-prepared SWNTs samples, i.e., as mixtures of metallic (33%) and semiconducting (66%) entities and SWNTs enriched in M tubes (98%) that result from the electrofunctionalization with PPV. This different behavior originates in the noncovalent and covalent functionalization of SWNTs enriched in M and S SWNTs tubes with PPV, respectively. A gradual decrease in the absorption of the infrared (IR) bands of PPV situated in the spectral range of 750-1000 cm(-1) as a result of the increase of the polymer weight on the blank Au support is reported. The electrofunctionalization of the as-prepared SWNTs induces position changes of the PPV IR absorption bands. In the presence of S-enriched SWNTs, a significant increase in the absorbance of the two IR bands peaked at 1452 and 1471 cm(-1), which are assigned to the vibrational modes of the phenyl ring stretching and the quinoid structure of the PPV, respectively, is reported. This results from the covalent bonding of the PPV macromolecular chains onto the surface of the SWNTs enriched in S tubes. Our results also demonstrate that the photoluminescence quenching effect reported for the PPV/SWNTs composites is due to the metallic nanotubes.
机译:在单壁碳纳米管(SWNTs)存在下,基于对α,α,α',α'-四溴对二甲苯进行电化学还原的新合成方法,用于获得经碳纳米管官能化的碳纳米管(CNT)的复合材料。聚(对-苯基-亚乙烯基)(PPV)。为了分离金属和半导体CNT与PPV相互作用的影响,使用富含半导体(S,99%)和金属(M,98%)管的SWNT进行实验。在制备的单壁碳纳米管样品的拉曼光谱中报告了相对强度和径向呼吸振动模式变化的显着变化,即金属(33%)和半导体(66%)实体的混合物以及富含M的单壁碳纳米管PPV进行电功能化处理的电子管(98%)。这种不同的行为分别源自富含PPV的M和S SWNTs管中的SWNT的非共价和共价功能化。据报道,由于空白Au载体上聚合物重量的增加,PPV在750-1000 cm(-1)光谱范围内的红外(IR)吸收带逐渐减小。所制备的SWNT的电官能化引起PPV IR吸收带的位置变化。在存在富S的单壁碳纳米管的情况下,两个红外波段的吸光度显着增加,分别在1452和1471 cm(-1)处达到峰值,这与苯环拉伸的振动模式和PPV的醌型结构有关分别报告。这是由于PPV大分子链共价键合到富含S管的SWNT的表面上。我们的结果还表明,报道的PPV / SWNTs复合材料的光致发光猝灭效应是由于金属纳米管引起的。

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