Ling Ying, Yang Zehui, Yang Jun, Zhang Yunfeng, Zhang Quan, Yu Xinxin, Cai Weiwei
Sustainable Energy Laboratory, Faculty of Materials Science and Chemistry, China University of Geosciences Wuhan, 388 Lumo RD, Wuhan, 430074, People's Republic of China.
Nanotechnology. 2018 Feb 2;29(5):055402. doi: 10.1088/1361-6528/aa9d20.
As is well known, the lower durability and sluggish methanol oxidation reaction (MOR) of PtRu alloy electrocatalyst blocks the commercialization of direct methanol fuel cells (DMFCs). Here, we design a new PtRu electrocatalyst, with highly stable CO tolerance and durability, in which the PtRu nanoparticles are embedded in nitrogen doped carbon layers derived from carbonization of poly(vinyl pyrrolidone). The newly fabricated electrocatalyst exhibits no loss in electrochemical surface area (ECSA) and MOR activity after potential cycling from 0.6-1.0 V versus reversible hydrogen electrode, while commercial CB/PtRu retains only 50% of its initial ECSA. Meanwhile, due to the same protective layers, the Ru dissolution is decelerated, resulting in stable CO tolerance. Methanol oxidation reaction (MOR) testing indicates that the activity of newly fabricated electrocatalyst is two times higher than that of commercial CB/PtRu, and the fuel cell performance of the embedded PtRu electrocatalyst was comparable to that of commercial CB/PtRu. The embedded PtRu electrocatalyst is applicable in real DMFC operation. This study offers important and useful information for the design and fabrication of durable and CO tolerant electrocatalysts.
众所周知,PtRu合金电催化剂较低的耐久性和迟缓的甲醇氧化反应(MOR)阻碍了直接甲醇燃料电池(DMFC)的商业化。在此,我们设计了一种新型的PtRu电催化剂,具有高度稳定的抗CO能力和耐久性,其中PtRu纳米颗粒嵌入到由聚乙烯吡咯烷酮碳化得到的氮掺杂碳层中。新制备的电催化剂在相对于可逆氢电极从0.6 - 1.0 V进行电位循环后,电化学表面积(ECSA)和MOR活性没有损失,而商业CB/PtRu仅保留其初始ECSA的50%。同时,由于相同的保护层,Ru的溶解速度减慢,从而产生稳定的抗CO能力。甲醇氧化反应(MOR)测试表明,新制备的电催化剂的活性比商业CB/PtRu高两倍,并且嵌入式PtRu电催化剂的燃料电池性能与商业CB/PtRu相当。嵌入式PtRu电催化剂适用于实际的DMFC运行。该研究为耐用且抗CO的电催化剂的设计和制备提供了重要且有用的信息。