使用新型 BPPNTs-V2O5 纳米管复合材料对面罩染料 BB 和 CR 进行光漂白:自组装和纳米团簇的 DFT 研究

K. Sivasankari, R. Naveenkumar, B. Karthikeyan
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引用次数: 0

摘要

自组装方法证明了 3,5-二氟甲基苄胺衍生物苯丙氨酸纳米管(BPPNTs)的可行生产。合成并表征了这些 BPPNT 的纳米-V2O5 复合材料。所报告的纳米复合材料显示出高度柔性的纳米管结构,在用作电催化剂或光催化剂时,可轻松获得电子。通过循环伏安法,这一前景广阔的平台被成功应用于电化学反应中。在给定的时间间隔内,观察到刚果红和亮蓝染料(掩膜层染料)的最大光降解率超过 50%。)这种现象可用于补救应用,如废旧掩膜的降解。通过 DFT 计算对自组装的 BPPNT 单体和 BPPNTs-V3O6 纳米团簇复合材料进行理论描述,验证了预测的结构应用。结果表明,本研究的一项重要成果是提出了用于光降解掩膜的纳米复合涂层掩膜层。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Photobleaching of face mask dyes BB and CR using novel BPPNTs-V2O5 nanotube composites: DFT studies of self-assembly and nanoclusters
Self-assembly method demonstrated the viable production of 3,5-bistrifluoromethyl benzylamine derivative of phenylalanine nanotubes (BPPNTs). Nano-V2O5 composite of these BPPNTs has been synthesized and characterized. The reported nanocomposite shows a highly flexible nanotube structure that provides easy access to electrons when used as an electrocatalyst or photocatalyst. This promising platform is successfully applied in the electrochemical reaction by cyclic voltammetry. Maximum photodegradation of Congo red and Brilliant blue dyes (mask layer dyes) has been observed above 50% at given time intervals). This phenomena can be used in remediation applications like the degradation of used masks. Theoretical descriptions of the self-assembled BPPNT monomer and BPPNTs-V3O6 nanocluster composite by DFT calculations produced the validation of the predicted structural applications. The results concluded the proposed nanocomposite-coated mask layers for use in photodegradable masks are a valuable outcome of this study.
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