Chen Junliang, Jiang Miaomiao, Zhang Fangzhou, Wang Li, Yang Jianping
State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Materials Science and Engineering, Donghua University, Shanghai, 201620, China.
Adv Mater. 2024 Sep;36(36):e2401867. doi: 10.1002/adma.202401867. Epub 2024 Jul 28.
Electro-reforming of poly(ethylene terephthalate) (PET) into valuable chemicals is garnering significant attention as it opens a mild avenue for waste resource utilization. However, achieving high activity and selectivity for valuable C2 products during ethylene glycol (EG) oxidation in PET hydrolysate on Pd electrocatalysts remains challenging. The strong interaction between Pd and carbonyl (*CO) intermediates leads to undesirable over-oxidation and poisoning of Pd sites, which hinders the highly efficient C2 products production. Herein, a nonmetallic alloying strategy is employed to fabricate a Pd-boron alloy aerogel (PdB), wherein B atoms are induced to regulate the electron structure and surface oxophilicity. This approach allows a remarkable mass activity of 6.71 A mg , glycolic acid (GA) Faradaic efficiency (FE) of 93.8%, and stable 100 h cyclic electrolysis. In situ experiments and density functional theory calculations reveal the contributions of B inserted in Pd lattice on highly effective EG-to-GA conversion. Interestingly, the heightened surface oxophilicity and regulated electronic structure by B incorporation weakened *CO intermediates adsorption and enhanced hydroxyl species affinity to accelerate oxidative *OH adspecies formation, thereby synergistically avoiding over-oxidation and boosting GA synthesis. This work provides valuable insights for the rational design of high-performance electrocatalysts for GA synthesis via an oxophilic B motifs incorporation strategy.
将聚对苯二甲酸乙二酯(PET)电重整为有价值的化学品正受到广泛关注,因为它为废物资源利用开辟了一条温和的途径。然而,在钯电催化剂上PET水解产物中的乙二醇(EG)氧化过程中,实现对有价值的C2产物的高活性和选择性仍然具有挑战性。钯与羰基(CO)中间体之间的强相互作用会导致钯位点发生不良的过度氧化和中毒,从而阻碍高效C2产物的生成。在此,采用一种非金属合金化策略制备了钯硼合金气凝胶(PdB),其中硼原子被引入以调节电子结构和表面亲氧性。这种方法实现了6.71 A mg的显著质量活性、93.8%的乙醇酸(GA)法拉第效率(FE)以及稳定的100小时循环电解。原位实验和密度泛函理论计算揭示了插入钯晶格中的硼对EG高效转化为GA的贡献。有趣的是,通过掺入硼提高的表面亲氧性和调节的电子结构减弱了CO中间体的吸附,并增强了羟基物种的亲和力,从而加速了氧化*OH吸附物种的形成,进而协同避免了过度氧化并促进了GA的合成。这项工作通过亲氧硼基序掺入策略为高效合成GA的高性能电催化剂的合理设计提供了有价值的见解。