Sun Libo, Jin Xindie, Su Tan, Fisher Adrian C, Wang Xin
Department of Chemistry, City University of Hong Kong, Hong Kong SAR, 999077, P. R. China.
Cambridge CARES, CREATE Tower, Singapore, 138602, Singapore.
Adv Mater. 2024 Apr;36(17):e2306336. doi: 10.1002/adma.202306336. Epub 2023 Oct 22.
Electrocatalytic hydrogen peroxide (HO) production has emerged as a promising alternative to the chemical method currently used in industry, due to its environmentally friendly conditions and potential for higher activity and selectivity. Heterogeneous molecular catalysts are promising in this regard, as their active site configurations can be judiciously designed, modified, and tailored with diverse functional groups, thereby tuning the activity and selectivity of the active sites. In this work, nickel phthalocyanine derivatives with various conjugation degrees are synthesized and identified as effective pH-universal electrocatalysts for HO production after heterogenized on nitrogen-decorated carbon, with increased conjugation degrees leading to boosted selectivity. This is explained by the regulated d-band center, which optimized the binding energy of the reaction intermediate, reducing the energy barrier for oxygen reduction and leading to optimized HO selectivity. The best catalyst, NiPyCN/CN, exhibits a high HO electrosynthesis activity with ≈95% of HO faradic efficiency in an alkaline medium, demonstrating its potential for HO production.
电催化过氧化氢(HO)的生产已成为一种有前途的替代目前工业上使用的化学方法的技术,这得益于其环保的条件以及具有更高活性和选择性的潜力。非均相分子催化剂在这方面很有前景,因为它们的活性位点构型可以通过明智地设计、修饰和用各种官能团进行定制,从而调节活性位点的活性和选择性。在这项工作中,合成了具有不同共轭程度的镍酞菁衍生物,并在氮修饰的碳上异质化后被鉴定为用于HO生产的有效的pH通用电催化剂,共轭程度的增加导致选择性提高。这可以通过调节d带中心来解释,它优化了反应中间体的结合能,降低了氧还原的能垒,并导致HO选择性得到优化。最佳催化剂NiPyCN/CN在碱性介质中表现出高的HO电合成活性,HO法拉第效率约为95%,证明了其在HO生产方面的潜力。