Ghosh Moulick Ranjita, Juneja Subhavna, Gupta Jagriti, Rana Vaishali, Bhattacharya Jaydeep
Amity Institute of Biotechnology/Amity Institute of Integrative Sciences and Health, Amity University Haryana, Gurugram 122413, Haryana, India.
School of Biotechnology, Jawaharlal Nehru University, New Delhi 110067, India.
ACS Omega. 2023 Nov 29;8(49):46481-46489. doi: 10.1021/acsomega.3c04675. eCollection 2023 Dec 12.
We report here the formation of Cu nanowires (CuNWs) from Cu nanoparticles (CuNPs) by a self-assembly process. The CuNPs were synthesized by the electro-explosion of wire (EEW) technique that included nonequilibrium processes for the synthesis. Structural evolution in terms of aggregation or nanowire formation in the samples was observed when the CuNPs were kept for a month after synthesis in a glass vial without the application of any external driving force. The emergence of tangled CuNWs was noticed at the bottom of the vials only when no agitation or aeration was allowed. The nanowires were characterized using transmission electron microscopy (TEM) and X-ray diffraction (XRD). Thermal oxidation of the nanowire samples implied that they could convert into rod-shaped structures. Loss of functionality was also observed in the hemoglobin precipitation study conducted to compare the activity of freshly prepared CuNPs and CuNWs. From the above observations, we conclude that the CuNP, after synthesis, possesses a huge amount of energy, and attainment of equilibrium occurs through either aggregation (clustering) or ordered self-assembly, depending on the conditions applied.
我们在此报告通过自组装过程由铜纳米颗粒(CuNPs)形成铜纳米线(CuNWs)的情况。CuNPs是通过线电爆炸(EEW)技术合成的,该技术包括用于合成的非平衡过程。当CuNPs在玻璃小瓶中合成后放置一个月而不施加任何外部驱动力时,观察到样品中聚集或纳米线形成方面的结构演变。仅在不允许搅拌或通气时,才在小瓶底部注意到缠结的CuNWs的出现。使用透射电子显微镜(TEM)和X射线衍射(XRD)对纳米线进行了表征。纳米线样品的热氧化表明它们可以转化为棒状结构。在进行血红蛋白沉淀研究以比较新制备的CuNPs和CuNWs活性时,也观察到了功能丧失。根据上述观察结果,我们得出结论,CuNP在合成后具有大量能量,并且根据所应用的条件,通过聚集(聚类)或有序自组装实现平衡。