State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, Wuhan University of Technology, Wuhan 430070, P. R. China.
Nanoscale. 2017 Mar 9;9(10):3555-3560. doi: 10.1039/c6nr09883e.
Applications of highly-efficient and durable non-precious metal electrocatalysts for hydrogen evolution reaction (HER) have great potential to relieve the energy crisis. Here, we demonstrate a green method for fabrication of a number of transition metal phosphides (TMPs) by pyrolyzing melamine and self-assembled phytic acid (PA) cross-linked metal complexes. The obtained materials consisting of TMP nanoparticles (NPs) are encapsulated in N,P-codoped carbon (NPC). Among TMPs, the resultant FeP NPs encapsulated in the NPC matrix (FeP NPs@NPC) show the highest HER activity at all pH values. At a current density of 10 mA cm, FeP NPs@NPC displays overpotentials of 130, 386 and 214 mV in 0.5 M HSO, 1.0 M phosphate buffer solution (PBS) and 1.0 M KOH, respectively. Additionally, the encapsulation by NPC effectively prevents FeP NPs from corrosion, exhibiting almost unfading catalytic activity after 10 h testing in acidic, neutral and basic electrolytes. More importantly, other TMPs wrapped in NPC (CoP NPs@NPC and NiP NPs@NPC) can be easily obtained by this method, which also exhibit relatively high activity toward HER. Therefore, this generic synthesis strategy opens a door for unprecedented design and fabrication of novel low-cost TMP based electrocatalysts for HER and other electrochemical applications.
高效且耐用的非贵金属析氢反应 (HER) 电催化剂的应用有望缓解能源危机。在这里,我们通过热解三聚氰胺和自组装植酸 (PA) 交联金属配合物来演示一种制造多种过渡金属磷化物 (TMP) 的绿色方法。所获得的材料由 TMP 纳米颗粒 (NPs) 组成,被封装在 N、P 共掺杂碳 (NPC) 中。在 TMPs 中,负载在 NPC 基质中的 FeP NPs(FeP NPs@NPC)在所有 pH 值下均表现出最高的 HER 活性。在 10 mA cm 的电流密度下,FeP NPs@NPC 在 0.5 M HSO、1.0 M 磷酸盐缓冲溶液 (PBS) 和 1.0 M KOH 中的过电势分别为 130、386 和 214 mV。此外,NPC 的封装有效防止了 FeP NPs 的腐蚀,在酸性、中性和碱性电解质中测试 10 小时后,其催化活性几乎没有衰减。更重要的是,通过这种方法可以很容易地获得负载在 NPC 中的其他 TMP(CoP NPs@NPC 和 NiP NPs@NPC),它们对 HER 也表现出相对较高的活性。因此,这种通用的合成策略为设计和制造用于 HER 和其他电化学应用的新型低成本 TMP 基电催化剂开辟了一条前所未有的道路。