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首页> 外文期刊>New Journal of Chemistry >Development of PANI/MWCNTs decorated with cobalt oxide nanoparticles towards multiple electrochemical, photocatalytic and biomedical application sites
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Development of PANI/MWCNTs decorated with cobalt oxide nanoparticles towards multiple electrochemical, photocatalytic and biomedical application sites

机译:面向多个电化学,光催化和生物医学应用领域的用氧化钴纳米粒子装饰的PANI / MWCNT的开发

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In the present work, a ternary nanocomposite of Co(3)O(4)doped/PANI/MWCNTs ( cobalt oxide-doped polyaniline multi-walled carbon nanotubes) was synthesized via the in situ oxidative polymerization of aniline. The composite was fully characterized using instrumental analysis, and further tested for its potential in electrochemical, photocatalytic and biomedical applications. The Co oxide nanoparticles were first synthesized using the sol-gel approach in the presence of starch as a capping agent so as to prevent agglomeration and characterized using Fourier transform infrared spectroscopy ( FTIR), powder X-ray diffraction ( XRD), scanning electron microscopy ( SEM), EDX, elemental mapping and high-resolution transmission electron microscopy ( HRTEM). For the measurement of electrochemical activity, the electrodes were synthesized with MWCNTs and functionalized with a conducting polymer ( PANI). For the composite, the Co metal oxide provides a pseudo-capacitance which, in general, improves the performance characteristics of the electrode and has been the focus of many researchers. Further, the specific capacitance of the prepared composite was tested using cyclic voltammetry ( CV) and impedance spectroscopy. The capacitive studies reveal that the composite has a synergistic effect and is observed to have the highest specific capacitance of 382 F g(-1) run at a scan rate of 10 mV s(-1). The composite was also found to have excellent photocatalytic degradation properties and outstanding antibacterial activity against both Gram positive and Gram negative bacterial strains. The minimum MIC ( 6.25 mu g mL(-1)) and MBC ( 12.5 mu g mL(-1)) values against E. coli and maximum values against B. amyloliquefaciens ( 25 and 50 mu g mL(-1)) at fourth dilution were observed. Furthermore, the anticancer efficiency of the composite was tested by making use of two different cancer cell types ( MCF-7 and MDA-MB-231) confirming the importance of its biological activity for biomedical applications.
机译:在本工作中,通过苯胺的原位氧化聚合反应合成了Co(3)O(4)掺杂/ PANI / MWCNTs(三氧化二钴掺杂的聚苯胺多壁碳纳米管)的三元纳米复合材料。使用仪器分析对复合材料进行了全面表征,并进一步测试了其在电化学,光催化和生物医学应用中的潜力。首先使用溶胶-凝胶法在存在淀粉作为封端剂的情况下合成Co氧化物纳米颗粒,以防止团聚,然后使用傅立叶变换红外光谱(FTIR),粉末X射线衍射(XRD),扫描电子显微镜对它们进行表征(SEM),EDX,元素映射和高分辨率透射电子显微镜(HRTEM)。为了测量电化学活性,用MWCNT合成了电极,并用导电聚合物(PANI)进行了功能化。对于复合材料,Co金属氧化物可提供伪电容,通常可改善电极的性能,这已成为许多研究人员的重点。此外,使用循环伏安法(CV)和阻抗光谱法测试了制备的复合材料的比电容。电容性研究表明,该复合材料具有协同作用,在扫描速率为10 mV s(-1)时观察到的最大比电容为382 F g(-1)。还发现该复合物具有优异的光催化降解性能和对革兰氏阳性和革兰氏阴性细菌菌株的杰出抗菌活性。对大肠杆菌的最低MIC(6.25微克mL(-1))和MBC(12.5微克mL(-1))值,对解淀粉芽孢杆菌的最大值(25和50微克mL(-1))为观察到第四稀释。此外,通过使用两种不同的癌细胞类型(MCF-7和MDA-MB-231)测试了复合材料的抗癌功效,证实了其生物活性对于生物医学应用的重要性。

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