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首页> 外文期刊>Journal of Applied Polymer Science >Thermal and morphological studies of chemically prepared emeraldine-base-form polyaniline powder
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Thermal and morphological studies of chemically prepared emeraldine-base-form polyaniline powder

机译:化学制备的翡翠碱型聚苯胺粉末的热学和形貌研究

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In this study, emeraldine base (EB)-form polyaniline (PANI) powder was chemically prepared in 1M HNO3 aqueous solution. The thermal characteristics and chemical structures of this powder were studied by differential scanning calorimetry (DSC), thermogravimetric analysis (TGA), Fourier transform infrared spectroscopy (FTIR), and X-ray diffraction (XRD). A polarizing optical microscope was also used to examine the crystalline morphology of this sample. The results indicated that the EB-form PANI powder had a discernible moisture content. Moreover, in the first run of DSC thermal analysis, the exothermic peak at 170-340degreesC was due to the crosslinking reaction occurring among the EB-form PANI molecular chains. FTIR and XRD examinations further confirmed the chemical crosslinking reaction during thermal treatment. TGA results illustrated that there were two major stages for weight loss of the EB-form PANI powder sample. The first weight loss, at the lower temperature, resulted from the evaporation of moisture. The second weight loss, at the higher temperature, was due to the chemical structure degradation of the sample. The degradation temperature of the EB-form PANI powder was around 420-450degreesC. The degradation temperature of emeraldine salt (ES)-form PANI powder was lower (around 360-410degreesC) than that of the EB form (around 420-450degreesC). From the TGA results, I roughly estimated that 2.74 aniline repeat units, on average, were doped with 1 HNO3 molecule in the ES-form PANI. I found a single crystalline morphology of EB-form PANI, mostly like a conifer leaf. More complex, multilayered dendritic structures were also found. (C) 2003 Wiley Periodicals, Inc. [References: 19]
机译:在这项研究中,在1M HNO3水溶液中化学制备了翡翠碱(EB)型聚苯胺(PANI)粉末。通过差示扫描量热法(DSC),热重分析(TGA),傅里叶变换红外光谱(FTIR)和X射线衍射(XRD)研究了该粉末的热特性和化学结构。偏光光学显微镜还用于检查该样品的晶体形态。结果表明,EB形式的PANI粉末具有明显的水分含量。此外,在DSC热分析的第一轮中,在170-340℃的放热峰是由于EB形式的PANI分子链之间发生了交联反应。 FTIR和XRD检查进一步证实了热处理过程中的化学交联反应。 TGA结果表明,EB型PANI粉末样品的失重有两个主要阶段。在较低温度下的第一重量损失是由于水分蒸发引起的。在较高温度下的第二次重量损失是由于样品的化学结构退化所致。 EB型PANI粉末的降解温度约为420-450℃。翡翠盐(ES)形式的PANI粉末的降解温度比EB形式的降解温度(约420-450摄氏度)低(约360-410摄氏度)。从TGA结果,我粗略估计,在ES形式的PANI中,平均有1.74个苯胺重复单元被1个HNO3分子掺杂。我发现了EB型PANI的单晶形态,主要是针叶树的叶子。还发现了更复杂的多层树状结构。 (C)2003 Wiley Periodicals,Inc. [参考:19]

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