碳载铂镍八面体纳米粒子作为质子交换膜燃料电池阴极催化剂的性能研究OA
Carbon Supported Octahedral PtNi Nanoparticles(Oct-PtNi/C)as a Cathode Catalyst for Proton Exchange Membrane Fuel Cells(PEMFCs)with Improved Activity and Durability
质子交换膜燃料电池(PEMFC)是一种有前景的能量转换装置,但其大规模商业应用受制于高昂的成本和较低的性能.PEMFC 的性能主要受限于阴极氧还原反应(ORR)的动力学.铂是对氧还原反应催化活性最高的单金属,但是其性能仍难以满足商业化应用.前期研究表明,铂镍八面体纳米粒子(oct-PtNi-NPs)在半电池中具有优异的 ORR 活性,但其在膜电极组件(MEA)中的性能报道较少.本论文研究了碳载铂镍八面体纳米粒子(oct-PtNi/C)作为阴极催化剂的膜电极组件性能.研究结果表明,温和的酸洗条件可溶解 oct-PtNi/C 表面不稳定的镍原子,得到 PNC-A 催化剂;以 PNC-A 催化剂为阴极催化剂的 MEA性能得到提高:当阴极铂负载量为 0.2 mg∙cm-2 时,MEA的最大功率密度达到 1.0 W∙cm-2,比使用商用 Pt/C 作为催化剂时高 15%;经 30,000 圈加速老化实验后,使用 PNC-A 催化剂的 MEA 的性能保持率为 82%,高于 Pt/C(74%).本论文研究了使用 PNC-A催化剂作为 PEMFC阴极催化剂的可能性,并发现该催化剂提高了 PEMFC的性能,同时降低了贵金属铂的用量.
Proton exchange membrane fuel cells(PEMFCs)are considered as a promising renewable power source.However,the massive commercial application of PEMFCs has been greatly hindered by their high expense and less-satisfied performance mainly due to the sluggish oxygen reduction reaction(ORR)kinetics even on state-of-the-art Pt catalyst.Octahedral PtNi nanoparticles(oct-PtNi NPs)with excellent ORR activity in a half-cell have been widely studied,while their performance in membrane electrode assembly(MEA)has much less reported.Herein,we investigated the MEA performance using the carbon supported oct-PtNi NPs(oct-PtNi/C)as the cathode catalyst.Under the mild acid washing condition,the surface Ni atoms of oct-PtNi/C were largely removed,and the performance of the MEA using the acid-leaching oct-PtNi/C(PNC-A)as the cathode catalyst was greatly improved.The maximum power density of the MEA reached 1.0 W·cm-2 with the cath-ode Pt loading of 0.2 mg·cm-2,which is 15%higher than that using Pt/C as the catalyst.After 30k cycles in the accelerated degradation test(ADT),the MEA using PNC-A as the catalyst showed a performance retention of 82%,higher than that of Pt/C(74%).The results reported here verify the possibility of using PNC-A as an advanced cathode catalyst in PEMFCs,thus enhancing the performance of PEMFCs while lowering the amount of expensive Pt.
丰紫薇;陈海忠;段骁;唐玲;赵云昆;黄龙
云南省现代分离分析与物质转化重点实验室,云南师范大学化学化工学院,云南 昆明 650500,中国云南省现代分离分析与物质转化重点实验室,云南师范大学化学化工学院,云南 昆明 650500,中国贵金属功能材料国家重点实验室,云南省贵金属实验室股份有限公司,云南 昆明 650106,中国贵金属功能材料国家重点实验室,云南省贵金属实验室股份有限公司,云南 昆明 650106,中国贵金属功能材料国家重点实验室,云南省贵金属实验室股份有限公司,云南 昆明 650106,中国云南省现代分离分析与物质转化重点实验室,云南师范大学化学化工学院,云南 昆明 650500,中国||贵金属功能材料国家重点实验室,云南省贵金属实验室股份有限公司,云南 昆明 650106,中国
质子交换膜燃料电池铂镍八面体氧还原反应膜电极组件
Proton exchange membrane fuel cellOctahedral PtNiOxygen reduction reactionMembrane electrode assembly
《电化学(中英文)》 2026 (1)
65-76,12
This work was mainly supported by grants from the Natural Science Foundation of China(22362031 and 21805121),and the Science and Technology Project of Yunnan Province(2019FD137).We thank Professor Zipeng Zhao in Beijing Institute of Technology for the guidance during the synthesis of oct-PtNi/C catalysts.
评论