Busi Kumar Babu, Kotha Jyothi, Bandaru Shamili, Ghantasala Jyothi Priyanka, Haseena Sheik, Bhamidipati Keerti, Puvvada Nagaprasad, Ravva Mahesh Kumar, Thondamal Manjunatha, Chakrabortty Sabyasachi
Department of Chemistry, SRM University AP Andhra Pradesh Andhra Pradesh 522240 India
Department of Biological Sciences, SRM University AP Andhra Pradesh Andhra Pradesh 522240 India.
RSC Adv. 2022 Jun 14;12(27):17585-17595. doi: 10.1039/d2ra02819k. eCollection 2022 Jun 7.
Metal nanoclusters (NCs) composed of the least number of atoms (a few to tens) have become very attractive for their emerging properties owing to their ultrasmall size. Preparing copper nanoclusters (Cu NCs) in an aqueous medium with high emission properties, strong colloidal stability, and low toxicity has been a long-standing challenge. Although Cu NCs are earth-abundant and inexpensive, they have been comparatively less explored due to their various limitations, such as ease of surface oxidation, poor colloidal stability, and high toxicity. To overcome these constraints, we established a facile synthetic route by optimizing the reaction parameters, especially altering the effective concentration of the reducing agent, to influence their optical characteristics. The improvement of the photoluminescence intensity and superior colloidal stability was modeled from a theoretical standpoint. Moreover, the as-synthesized Cu NCs showed a significant reduction of toxicity in both and models. The possibility of using such Cu NCs as a diagnostic probe toward was explored. Also, the extension of our approach toward improving the photoluminescence intensity of the Cu NCs on other ligand systems was demonstrated.
由最少数量的原子(几个到几十个)组成的金属纳米团簇(NCs)因其超小尺寸所展现出的新特性而变得极具吸引力。在水介质中制备具有高发射特性、强胶体稳定性和低毒性的铜纳米团簇(Cu NCs)一直是一项长期挑战。尽管Cu NCs在地壳中储量丰富且价格低廉,但由于其存在各种局限性,如易于表面氧化、胶体稳定性差和毒性高,相对而言对它们的研究较少。为了克服这些限制,我们通过优化反应参数,特别是改变还原剂的有效浓度,建立了一种简便的合成路线,以影响其光学特性。从理论角度对光致发光强度的提高和优异的胶体稳定性进行了建模。此外,所合成的Cu NCs在体外和体内模型中均显示出毒性的显著降低。探索了将此类Cu NCs用作针对某疾病的诊断探针的可能性。同时,还展示了我们的方法在其他配体体系上提高Cu NCs光致发光强度的拓展应用。