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Synthesis of Polyvinylpyrrolidone (PVP)-Green Tea Extract Composite Nanostructures using Electrohydrodynamic Spraying Technique

机译:用电流动力喷涂技术合成聚乙烯吡咯烷酮(PVP)-Green茶提取物复合纳米结构

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Green Tea Extract (GTE) as an active substance has successfully loaded to PVP nanostructures using electrohydrodynamic spraying technique. The precursor solution was the mixture of ethanolic polyvinylpyrrolidone (PVP) with a molecular weight of 1,300 kg/mol and ethanolic GTE solutions at a weight concentration of 4 wt.% and 2 wt.%, respectively, and it was estimated that the entanglement number was 2. The electrospraying was conducted at the voltage of 15 kV, the flow rate of 10 μL/min., and the distance between the collector and the tip of the nozzle of 10 cm. The SEM images showed that the PVP/GTE nanostructures had a combination of agglomerated beads (less spherical particles) and nanofibers. This occurred because if the PVP concentration is low, the PVP/GTE composite has weak core structures that cause the shell to be easily agglomerated each other. The intermolecular interaction between PVP and GTE in the PVP/GTE nanostructures occurred as confirmed by the peak at 3396 cm~(-1), which is the carboxyl group, proving that the PVP/GTE nanostructures contained water, alcohols, and phenols. The peak at 1040 cm~(-1), which is the stretching of C-O group in amino acid, gave another proof to the intermolecular interaction.
机译:使用电液动力喷涂技术成功地装载到活性物质作为活性物质的绿茶提取物(GTE)。前体溶液是乙醇聚乙烯吡咯烷酮(PVP)的混合物,其分子量为1,300kg / mol,乙醇的GTE溶液,其重量浓度分别为4重量%和2重量%。%,估计纠缠数是2.电喷雾器在15kV的电压下进行,流速为10μl/ min。以及收集器之间的距离和10cm的喷嘴的尖端。 SEM图像显示PVP / GTE纳米结构具有附聚珠粒(较少球形颗粒)和纳米纤维的组合。这发生了,因为如果PVP浓度低,PVP / GTE复合材料具有弱芯结构,导致壳体易于彼此凝聚。 PVP / GTE纳米结构中PVP和GTE之间的分子间相互作用发生,如通过3396cm〜(-1)的峰值确认,即羧基,证明了PVP / GTE纳米结构含有水,醇和酚。 1040cm〜(-1)的峰值,即氨基酸中的C-O基团的拉伸,对分子间相互作用进行了另一种证据。

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