Abudayyeh Abdullah M, Bennington Michael S, Hamonnet Johan, Marshall Aaron T, Brooker Sally
Department of Chemistry, University of Otago, Dunedin, 9016, New Zealand.
The MacDiarmid Institute for Advanced Materials and Nanotechnology, New Zealand.
Dalton Trans. 2024 Apr 2;53(14):6207-6214. doi: 10.1039/d4dt00224e.
In aqueous pH 7 phosphate buffer, during controlled potential electrolysis (CPE) at -1.10 V Ag|AgCl the literature square planar copper complex, [CuLEt]BF (1), forms a heterogeneous deposit on the glassy carbon working electrode (GCWE) that is a stable and effective hydrogen evolution reaction (HER) electrocatalyst. Specifically, CPE for 20 hours using a small GCWE ( = 0.071 cm) gave a turnover number (TON) of 364, with ongoing activity. During CPE the brownish-yellow colour of the working solution fades, and a deposit is observed on the small GCWE. Repeating this CPE experiment in a larger cell with a larger GCWE ( = 2.7 cm), connected to a gas chromatograph, resulted in a TON of 2628 after 2.6 days, with FE = 93%, and with activity ongoing. After this CPE, the working solution had faded to nearly colourless, and visual inspection of the large GCWE showed a material had deposited on the surface. In a 'rinse and repeat test', this heterogeneous deposit was used for further CPE, in a freshly prepared working solution minus fresh catalyst, which resulted in similar ongoing HER activity to before, consistent with the surface deposited material being the active HER catalyst. EDS, PXRD and SEM analysis of this deposit shows that copper and oxygen are the main components present, most likely comprising copper and copper(I) oxide ((CuO)) formed from 1. The use of 1 leads to a deposit that is more catalytically active than that formed when starting with a simple copper salt (control), likely due to it forming a more robustly attached deposit, which also enables the observed long-lived catalytic activity.
在pH 7的水性磷酸盐缓冲液中,在 -1.10 V(Ag|AgCl)的控制电位电解(CPE)过程中,文献报道的平面正方形铜配合物[CuLEt]BF(1)在玻璃碳工作电极(GCWE)上形成异质沉积物,该沉积物是一种稳定且有效的析氢反应(HER)电催化剂。具体而言,使用小型GCWE( = 0.071 cm)进行20小时的CPE,得到的周转数(TON)为364,且活性持续。在CPE过程中,工作溶液的棕黄色逐渐褪去,并且在小型GCWE上观察到有沉积物。在连接到气相色谱仪的较大电解池中,使用较大的GCWE( = 2.7 cm)重复此CPE实验,2.6天后TON为2628,法拉第效率(FE)为93%,且活性持续。此CPE之后,工作溶液几乎褪色至无色,肉眼观察大型GCWE表明表面有物质沉积。在“冲洗并重复测试”中,将这种异质沉积物用于在新鲜制备的不含新鲜催化剂的工作溶液中进行进一步的CPE,这导致与之前相似的持续HER活性,这与表面沉积的物质是活性HER催化剂一致。对该沉积物的EDS、PXRD和SEM分析表明,铜和氧是主要成分,最有可能是由1形成的铜和氧化亚铜((CuO))。使用1导致形成的沉积物比从简单铜盐开始(对照)时形成的沉积物具有更高的催化活性,这可能是因为它形成了更牢固附着的沉积物,这也使得能够观察到长期的催化活性。