Technical University of Darmstadt, Department of Chemistry, Ernst-Berl-Institut für Technische und Makromolekulare Chemie, Alarich-Weiss-Straße 8, 64287, Darmstadt, Germany.
Leibniz Institut für Katalyse e.V. (LIKAT Rostock), 18059, Rostock, Germany, Albert-Einstein-Straße 29a.
ChemistryOpen. 2021 May;10(5):600-606. doi: 10.1002/open.202100072.
Electrocatalytic oxidation of 5-hydroxymethylfurfural (HMF) offers a renewable approach to produce the value-added platform chemical 2,5-furandicarboxylic acid (FDCA). The key for the economic viability of this approach is to develop active and selective electrocatalysts. Nevertheless, a reliable catalyst evaluation protocol is still missing, leading to elusive conclusions on criteria for a high-performing catalyst. Herein, we demonstrate that besides the catalyst identity, secondary parameters such as materials of conductive substrates for the working electrode, concentration of the supporting electrolyte, and electrolyzer configurations have profound impact on the catalyst performance and thus need to be optimized before assessing the true activity of a catalyst. Moreover, we highlight the importance of those secondary parameters in suppressing side reactions, which has long been overlooked. The protocol is validated by evaluating the performance of free-standing Cu-foam, and CuCoO modified with NaPO H and Ni, which were immobilized on boron-doped diamond (BDD) electrodes. Recommended practices and figure of merits in carefully evaluating the catalyst performance are proposed.
电化学氧化 5-羟甲基糠醛(HMF)为生产增值平台化学品 2,5-呋喃二甲酸(FDCA)提供了一种可再生的方法。该方法具有经济可行性的关键是开发活性和选择性的电催化剂。然而,仍然缺少可靠的催化剂评估方案,导致对高性能催化剂的标准难以得出明确的结论。在此,我们证明了除了催化剂的特性外,工作电极的导电基底材料、支持电解质的浓度和电解槽配置等次要参数对催化剂性能也有深远的影响,因此在评估催化剂的真正活性之前需要对其进行优化。此外,我们强调了这些次要参数在抑制副反应方面的重要性,而这一点长期以来一直被忽视。该方案通过评估负载在掺硼金刚石(BDD)电极上的独立式 Cu 泡沫以及用 NaPOH 和 Ni 修饰的 CuCoO 的性能得到了验证。本文提出了在仔细评估催化剂性能时的推荐实践和评价标准。