State Key Laboratory of Heavy Oil Processing, China University of Petroleum, Beijing 102249, China.
Dalton Trans. 2018 Jun 19;47(24):7975-7982. doi: 10.1039/c8dt01311j.
Despite intense research in the past decades, the lack of high-performance catalysts for fuel cell reactions remains a challenge in realizing fuel cell applications. Herein, we report a novel hybrid nanomaterial of platinum-nickel hydroxide-nanotubes (Pt/Ni(OH)2/CNTs) for improving electrocatalytic performance in alkaline environments. Ni(OH)2 was directly grown on functionalized nanotubes and then, Pt nanoparticles were in situ immobilized by the microwave synthesis method. Due to electronic and synergistic effects, 10 : 2-Pt/Ni(OH)2/N-CNT catalyst exhibited 2.77 times specific activity and 6.27 times mass activity toward methanol oxidation reaction (MOR), which were higher than those of commercial Pt/C in alkaline solution. The CO-stripping experiments and hydrogen evolution reaction (HER) further demonstrated that Ni(OH)2 could promote oxidation removal of carbonaceous poison for MOR via accelerating water dissociation: (i) Ni(OH)2 acted on an H2O molecule, leading to the formation of OHad; (ii) OHad oxidized the intermediate COad to CO2. Furthermore, the 10 : 2-Pt/Ni(OH)2/N-CNT catalyst also exhibited 2.07 times specific activity and 1.67 times mass activity toward oxygen reduction reaction (ORR), which were higher than those of commercial Pt/C in alkaline solution and Pt/N-CNT catalysts. Thus, the preparation of this hybrid nanomaterial provides a new direction for catalyst performance optimization towards next-generation fuel cells in alkaline environments.
尽管在过去几十年中进行了深入研究,但缺乏用于燃料电池反应的高性能催化剂仍然是实现燃料电池应用的挑战。在此,我们报告了一种新型的铂-镍氢氧化物-纳米管(Pt/Ni(OH)2/CNTs)混合纳米材料,用于提高碱性环境中的电催化性能。Ni(OH)2 直接生长在功能化的纳米管上,然后通过微波合成方法原位固定 Pt 纳米颗粒。由于电子和协同效应,10:2-Pt/Ni(OH)2/N-CNT 催化剂在碱性溶液中对甲醇氧化反应(MOR)的比活性和质量活性分别提高了 2.77 倍和 6.27 倍,高于商业 Pt/C。CO 剥离实验和析氢反应(HER)进一步表明,Ni(OH)2 通过加速水分解可以促进 MOR 中碳质毒物的氧化去除:(i)Ni(OH)2 作用于一个 H2O 分子,导致 OHad 的形成;(ii)OHad 将中间态 COad 氧化为 CO2。此外,10:2-Pt/Ni(OH)2/N-CNT 催化剂在碱性溶液中和 Pt/N-CNT 催化剂中对氧还原反应(ORR)的比活性和质量活性分别提高了 2.07 倍和 1.67 倍。因此,这种混合纳米材料的制备为优化下一代碱性环境燃料电池的催化剂性能提供了新的方向。