The University of the Chinese Academy of Sciences , Beijing 100039, P. R. China.
Guangdong Provincial Key Laboratory of Organic Polymer Materials for Electronics , Guangzhou 510650, P. R. China.
ACS Appl Mater Interfaces. 2018 Feb 21;10(7):6778-6784. doi: 10.1021/acsami.7b19644. Epub 2018 Feb 8.
Reported herein is a novel strategy for the rapid and efficient collection of platinum from Karstedt's catalyst solution. By taking advantage of a ligand-exchange reaction between alkynols and the 1,3-divinyltetramethyldisiloxane ligand (MM) that coordinated with platinum (Pt(0)), the Karstedt's catalyst particles with a size of approximately 2.5 ± 0.7 nm could be reconstructed and assembled into larger particles with a size of 150 ± 35 nm due to the hydrogen bonding between the hydroxyl groups of the alkynol. In addition, because the silicone-soluble MM ligand of the Karstedt's catalyst was replaced by water-soluble alkynol ligands, the resultant large particles were readily dispersed in water, resulting in rapid, efficient, and complete collection of platinum from the Karstedt's catalyst solutions with platinum concentrations in the range from ∼20 000 to 0.05 ppm. Our current strategy not only was used for the rapid and efficient collection of platinum from the Karstedt's catalyst solutions, but it also enabled the precise evaluation of the platinum content in the Karstedt's catalysts, even if this platinum content was extremely low (i.e., 0.05 ppm). Moreover, these platinum specimens that were efficiently collected from the Karstedt's catalyst solutions could be directly used for the evaluation of platinum without the need for pretreatment processes, such as calcination and digestion with hydrofluoric acid, that were traditionally used prior to testing via inductively coupled plasma mass spectrometry in conventional methods.
本文报道了一种从 Karstedt 催化剂溶液中快速高效收集铂的新策略。利用炔醇与配位铂(Pt(0))的 1,3-二乙烯基四甲基二硅氧烷配体(MM)之间的配体交换反应,Karstedt 催化剂颗粒的尺寸约为 2.5 ± 0.7nm,可以重建并组装成尺寸为 150 ± 35nm 的较大颗粒,这是由于炔醇的羟基之间的氢键作用。此外,由于 Karstedt 催化剂的硅溶 MM 配体被水溶性炔醇配体取代,因此所得的大颗粒很容易分散在水中,从而可以从 Karstedt 催化剂溶液中快速、高效、完全地收集铂,铂浓度范围为 ∼20000 至 0.05ppm。我们目前的策略不仅可用于从 Karstedt 催化剂溶液中快速高效地收集铂,而且还可以精确评估 Karstedt 催化剂中的铂含量,即使铂含量极低(即 0.05ppm)。此外,这些从 Karstedt 催化剂溶液中高效收集的铂样品可以直接用于评估铂,而无需进行传统方法中电感耦合等离子体质谱测试前通常需要的预处理过程,例如煅烧和用氢氟酸消解。