Instituto de Nanosistemas, UNSAM, CONICET, 25 de mayo 1021, San Martín, 1650), Buenos Aires, Argentina.
Gerencia Química Instituto de Nanociencia y Nanotecnología, Centro Atómico Constituyentes, Comisión Nacional de Energía Atómica, CONICET, Av. Gral. Paz 1499, San Martín, 1650), Buenos Aires, Argentina.
ChemSusChem. 2019 Nov 8;12(21):4882-4888. doi: 10.1002/cssc.201901488. Epub 2019 Oct 16.
The market for products based on nanotechnology, and with it the use of nanomaterials and the generation of nanowaste, increases day by day. Among the vast variety of nanomaterials available, gold nanoparticles (AuNPs) are among the most studied and applied in commercial products. This current situation requires both the development of recovery methods to reduce the amount of nanowaste produced, and new synthetic methods that allow the reuse of recovered gold for new nanomaterial production, keeping in mind both economical and ecological considerations. In this work, a methodology to recover gold from aqueous laboratory nanowaste and transform it into an aqueous HAuCl solution was developed, using extremely simple procedures and readily available chemical reagents (NaCl, HCl, H O ) and allowing the recovery of more than 99 % of the original gold. The experiments were performed by using both simulated and real laboratory nanowastes, and practically the same results were obtained. Moreover, the subsequent use of the obtained aqueous HAuCl solution from the recovered gold to produce spherical AuNPs through a seed-mediated approach was demonstrated. Thus, this work presents for the first time a complete recycling cycle from nanowaste to the reagent and back to the nanomaterial.
基于纳米技术的产品市场日益增长,其中包括纳米材料的使用和纳米废物的产生。在现有的各种纳米材料中,金纳米粒子(AuNPs)是研究和应用最多的商业产品之一。这种现状既需要开发回收方法来减少纳米废物的产生量,也需要新的合成方法,以便在考虑经济和生态因素的情况下,将回收的金重新用于生产新的纳米材料。在这项工作中,开发了一种从水性实验室纳米废物中回收金并将其转化为 HAuCl 水溶液的方法,该方法使用了极其简单的程序和易于获得的化学试剂(NaCl、HCl、H O ),并允许回收超过 99%的原始金。实验分别使用模拟和实际的实验室纳米废物进行,几乎得到了相同的结果。此外,还证明了可以从回收的金中获得的 HAuCl 溶液,通过种子介导的方法来制备球形 AuNPs。因此,这项工作首次提出了从纳米废物到试剂再到纳米材料的完整回收循环。