Department of Chemical and Biomolecular Engineering (BK21 Graduate Program) & Center for Ultramicrochemical Process Systems, Korea Advanced Institute of Science and Technology, Yuseong-gu, Daejeon 305-701, Republic of Korea.
Langmuir. 2010 Nov 2;26(21):16529-33. doi: 10.1021/la101355d.
One of the major issues in direct methanol fuel cell research is to develop a new catalyst for methanol electro-oxidation reaction (MOR) with high activity and low cost. In this study, a new, simple, and economic way was introduced to improve the catalytic activity of commercial PtRu black catalyst for the MOR. A nanocomposite electrode was fabricated by mixing the PtRu catalyst with Fe(2)O(3) nanoclusters. When 10 wt % of the PtRu catalyst was replaced by the Fe(2)O(3) nanoclusters, mass activity (A/g(Pt)) increased by 80% compared to that of the pure PtRu catalyst. Specific activity of the mixed catalyst was 100% higher than that of the pure PtRu catalyst. The nanocomposite catalysts were also applied to single cells. Although the amount of the PtRu catalyst was reduced by 10 wt %, 10% higher potential was observed in the nanocomposite catalysts at a current density of 100 mA/cm(2).
在直接甲醇燃料电池的研究中,一个主要问题是开发具有高活性和低成本的新型甲醇电氧化反应(MOR)催化剂。在这项研究中,提出了一种新的、简单的、经济的方法来提高商业 PtRu 黑催化剂对 MOR 的催化活性。通过将 PtRu 催化剂与 Fe(2)O(3)纳米团簇混合,制备了纳米复合电极。当 10wt%的 PtRu 催化剂被 Fe(2)O(3)纳米团簇取代时,与纯 PtRu 催化剂相比,质量活性(A/g(Pt))提高了 80%。混合催化剂的比活性比纯 PtRu 催化剂高 100%。纳米复合催化剂也被应用于单电池。尽管 PtRu 催化剂的用量减少了 10wt%,但在电流密度为 100mA/cm(2)时,纳米复合催化剂的电位提高了 10%。