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一种新型的捕集器-催化剂微反应器系统,其在多孔蜂窝状图案薄膜中掺入了聚吡咯/金属纳米颗粒复合材料。

Novel Capturer-Catalyst Microreactor System with a Polypyrrole/Metal Nanoparticle Composite Incorporated in the Porous Honeycomb-Patterned Film.

作者信息

Falak Shahkar, Shin Bokyoung, Kang Chaewon, Khan Zeeshan Ahmad, Huh Do Sung

机构信息

Department of Nano Science and Engineering, Center of Nano Manufacturing, Inje University, Gimhae City 50834, Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2023 Sep 20;15(37):44456-44468. doi: 10.1021/acsami.3c07667. Epub 2023 Aug 27.

Abstract

A composite of polypyrrole/metal nanoparticles (PPy/MNPs) was selectively incorporated into the pores of a honeycomb-patterned porous polycaprolactone polymer film to fabricate a novel capturer-catalyst microreactor system. This fabrication involved a modified breath figure method, where the polymer solution containing metal ions as an oxidizing agent was cast under humid conditions along with the pyrrole monomer through an interfacial reaction in a one-step in situ process. The higher hydrophilicity of the metal ions compared to the polymer solution led to their self-assembly around the pore surface, resulting in the selective incorporation of the PPy/MNP composite into the porous film. Copper (Cu), silver (Ag), and gold (Au) were used for the PPy/MNP fabrication. Various methods characterized the fabricated film. Strong catalytic degradations of methylene blue and methyl orange were obtained with PCL-PPy/MNPs. Recycling experiments showed no loss of activity even after five cycles of recycling. Comparative analysis of PCL-PPy, PCL-MNP, and PCL-PPy/MNP results indicated the synergistic action of PPy and MNPs in dye degradation. High-performance liquid chromatography and mass spectroscopy analyses confirmed dye degradation after treatment with a fabricated microreactor. PPy might have acted as a capturer of the dye molecule and MNPs as a catalyst, thereby enhancing the efficiency of dye degradation. Additionally, the PCL-PPy/Cu composite exhibited strong antimicrobial properties against Gram-positive () and Gram-negative bacteria () with no cytotoxicity as measured by the MTT assay. Therefore, the fabricated microreactor film has promising applications in various fields.

摘要

将聚吡咯/金属纳米颗粒(PPy/MNPs)复合物选择性地掺入蜂窝状多孔聚己内酯聚合物膜的孔中,以制备一种新型的捕获器-催化剂微反应器系统。这种制备方法涉及一种改进的呼吸图法,即将含有作为氧化剂的金属离子的聚合物溶液在潮湿条件下与吡咯单体一起通过一步原位界面反应浇铸。与聚合物溶液相比,金属离子具有更高的亲水性,导致它们在孔表面自组装,从而使PPy/MNP复合物选择性地掺入多孔膜中。铜(Cu)、银(Ag)和金(Au)用于PPy/MNP的制备。采用多种方法对制备的薄膜进行了表征。PCL-PPy/MNPs对亚甲基蓝和甲基橙具有很强的催化降解作用。循环实验表明,即使经过五次循环,活性也没有损失。PCL-PPy、PCL-MNP和PCL-PPy/MNP结果的对比分析表明,PPy和MNPs在染料降解中具有协同作用。高效液相色谱和质谱分析证实了用制备的微反应器处理后染料的降解。PPy可能作为染料分子的捕获器,MNPs作为催化剂,从而提高了染料降解效率。此外,PCL-PPy/Cu复合物对革兰氏阳性菌()和革兰氏阴性菌()表现出很强的抗菌性能,MTT法测定无细胞毒性。因此,制备的微反应器薄膜在各个领域都有广阔的应用前景。

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