Alan G. MacDiarmid Institute, College of Chemistry, Jilin University, Changchun 130012, PR China.
Alan G. MacDiarmid Institute, College of Chemistry, Jilin University, Changchun 130012, PR China.
J Colloid Interface Sci. 2018 Mar 15;514:199-207. doi: 10.1016/j.jcis.2017.12.028. Epub 2017 Dec 11.
Among various methods for acquiring hydrogen fuel, electrocatalytic water splitting is considered to be as one of the most efficient and promising approaches. Pt is regarded as the best electrocatalyst for the hydrogen evolution reaction (HER) during water splitting process, however, the scarcity and costliness of Pt restrict the large-scale practical application. On the other hand, transition metal Ni is abundant in earth and exhibits favorable HER catalytic activity theoretically. In this work, we have demonstrated a facile electrospinning combined with calcination and chemical reduction processes to fabricate Pt nanoparticles loaded on nitrogen-doped carbon/Ni nanofibers (Ni-NCNFs-Pt) as efficient HER electrocatalysts. The as-prepared Ni-NCNFs-Pt not only reduced the usage of noble metal Pt but also revealed an excellent electrochemical activity at all values of pH, including the smaller overpotentials of 47, 22 and 84 mV (at j = 10 mA cm) in 0.5 M HSO, 1 M KOH and 0.1 M phosphate buffer solution, respectively. In addition, Ni-NCNFs-Pt nanocatalyst displayed an extraordinary low Tafel slope and long durability over a wide range of pH. The remarkable HER performance could be ascribed to the increased electrochemical active surface area through the introduction of Ni nanoparticles, synergistic interactions between Ni and Pt nanoparticles and the introduction of the conductive nitrogen-doped carbon nanofibers (NCNFs) substrate which facilitated the fast electron transport. This investigation provides a potential route to construct efficient and low cost HER electrocatalysts with promising practical applications in renewable energy conversion and storage devices.
在获取氢气燃料的各种方法中,电催化水分解被认为是最有效和最有前途的方法之一。Pt 被认为是水分解过程中析氢反应 (HER) 的最佳电催化剂,然而,Pt 的稀缺性和昂贵价格限制了其大规模的实际应用。另一方面,过渡金属 Ni 在地球上储量丰富,理论上表现出良好的 HER 催化活性。在这项工作中,我们展示了一种简便的静电纺丝结合煅烧和化学还原工艺,制备了负载在氮掺杂碳/ Ni 纳米纤维上的 Pt 纳米粒子 (Ni-NCNFs-Pt),作为高效的 HER 电催化剂。所制备的 Ni-NCNFs-Pt 不仅减少了贵金属 Pt 的使用量,而且在所有 pH 值下都表现出优异的电化学活性,包括在 0.5 M HSO、1 M KOH 和 0.1 M 磷酸盐缓冲溶液中的更小的过电势 47、22 和 84 mV(在 j = 10 mA cm)。此外,Ni-NCNFs-Pt 纳米催化剂在很宽的 pH 范围内表现出非凡的低塔菲尔斜率和长耐久性。优异的 HER 性能可归因于通过引入 Ni 纳米粒子增加了电化学活性表面积、Ni 和 Pt 纳米粒子之间的协同相互作用以及引入了导电氮掺杂碳纳米纤维 (NCNFs) 基底,这促进了快速电子传输。这项研究为构建高效、低成本的 HER 电催化剂提供了一种潜在途径,有望在可再生能源转换和存储设备中得到实际应用。