Mo Xiaoyong, Gao Xutao, Gillado Armida V, Chen Hsuan-Yu, Chen Yong, Guo Zhengxiao, Wu Heng-Liang, Tse Edmund C M
Department of Chemistry, HKU-CAS Joint Laboratory on New Materials, University of Hong Kong, Hong Kong SAR 999077, People's Republic of China.
HKU Zhejiang Institute of Research and Innovation, Hangzhou 311305, People's Republic of China.
ACS Nano. 2022 Aug 23;16(8):12202-12213. doi: 10.1021/acsnano.2c02865. Epub 2022 Aug 12.
Net-zero carbon strategies and green synthesis methodologies are key to realizing the United Nations' sustainable development goals (SDGs) on a global scale. An electrocatalytic glycerol oxidation reaction (GOR) holds the promise of upcycling excess glycerol from biodiesel production directly into precious hydrocarbon commodities that are worth orders of magnitude more than the glycerol feedstock. Despite years of research on the GOR, the synthesis process of nanoscale electrocatalysts still involves (1) prohibitive heat input, (2) expensive vacuum chambers, and (3) emission of toxic liquid pollutants. In this paper, these knowledge gaps are closed via developing a laser-assisted nanomaterial preparation (LANP) process to fabricate bimetallic nanocatalysts (1) at room temperature, (2) under an ambient atmosphere, and (3) without liquid waste emission. Specifically, PdCu nanoparticles with adjustable Pd:Cu content supported on few-layer graphene can be prepared using this one-step LANP method with performance that can rival state-of-the-art GOR catalysts. Beyond exhibiting high GOR activity, the LANP-fabricated PdCu/C nanomaterials with an optimized Pd:Cu ratio further deliver an exclusive product selectivity of up to 99% for partially oxidized C products with value over 280000-folds that of glycerol. Through DFT calculations and XAS experiments, the synergy between Pd and Cu is found to be responsible for the stability under GOR conditions and preference for C products of LANP PdCu. This dry LANP method is envisioned to afford sustainable production of multimetallic nanoparticles in a continuous fashion as efficient electrocatalysts for other redox reactions with intricate proton-coupled electron transfer steps that are central to the widespread deployment of renewable energy schemes and carbon-neutral technologies.
净零碳战略和绿色合成方法是在全球范围内实现联合国可持续发展目标(SDGs)的关键。电催化甘油氧化反应(GOR)有望将生物柴油生产中多余的甘油直接升级转化为比甘油原料价值高出几个数量级的珍贵碳氢化合物产品。尽管对GOR进行了多年研究,但纳米级电催化剂的合成过程仍涉及:(1)过高的热输入;(2)昂贵的真空室;(3)有毒液体污染物的排放。在本文中,通过开发一种激光辅助纳米材料制备(LANP)工艺来填补这些知识空白,以(1)在室温下、(2)在环境气氛中、(3)无液体废物排放的情况下制备双金属纳米催化剂。具体而言,使用这种一步LANP方法可以制备负载在少层石墨烯上的Pd:Cu含量可调的PdCu纳米颗粒,其性能可与最先进的GOR催化剂相媲美。除了表现出高GOR活性外,具有优化Pd:Cu比的LANP制备的PdCu/C纳米材料还对部分氧化的C产物提供高达99%的独家产物选择性,其价值是甘油的280000多倍。通过密度泛函理论(DFT)计算和X射线吸收光谱(XAS)实验,发现Pd和Cu之间的协同作用是GOR条件下稳定性以及LANP PdCu对C产物偏好的原因。这种干式LANP方法有望以连续方式可持续生产多金属纳米颗粒,作为用于其他氧化还原反应的高效电催化剂,这些反应具有复杂的质子耦合电子转移步骤,这对于可再生能源计划和碳中性技术的广泛应用至关重要。