Zeyu LiQiuming GaoHang ZhangWeiqian TianYanli TanWeiwei QianZhengping Liu
Abstract A novel kind of Pt/N-rGO hybrid possessing of low content 5.31 wt.% Pt anchored on the surface of nitrogen doped reduced graphene oxide (N-rGO) evenly was prepared. The Pt has uniformed 2.8 nm diameter and exposed (111) crystal planes; meanwhile, the N works as the bridge between Pt and rGO with the Pt-N and N-C chemical bonds in Pt/N-rGO. The Pt/N-rGO material has a very high electrocatalytic activity in oxygen reduction reaction with the mass catalytic activity more than 1.5 times of the commercial Pt/C due to the synergistic catalytic effect of both N-doped carbon matrix and Pt nanoparticles. Moreover, the Pt/N-rGO exhibits an excellent stability with hardly loss (only 0.4%) after accelerated durability tests of 5000 cycles based on the stable Pt-N-C chemical bonds in Pt/N-rGO, which can prevent the detachment, dissolution, migration and aggregation of Pt nanoparticles on the matrix during the long-term cycling.
Sabina YasminYuri JooSeungwon Jeon
Jirong BaiLei ChengShuxin LiuYuebin LianYaoyao DengQuanfa ZhouMei XiangYawen TangYaqiong Su
Kwangrok ChoiSeungjun LeeYeonjun ShimJunghoon OhSujin KimSungjin Park
Hongtao YuYunchao LiXiaohong LiLouzhen FanShihe Yang
Yuan ZhaoRong FanChuanxiang ZhangHaijun TaoJianjun Xue