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1)  Pt-SnO_2/C catalyst
Pt-SnO2/C催化剂
2)  Pt/C catalysts
Pt/C催化剂
1.
Research progress in durability of Pt/C catalysts for PEMFC
PEMFC用Pt/C催化剂耐久性的研究进展
2.
The technical conditions of preparing Pt/C catalysts were investigated using Microwave Digestion Workstation,which has closed vessels for high pressure and controlled programs for heating.
1 nm的Pt/C催化剂,且Pt粒子分布均匀,无团聚。
3.
Pt/C catalysts were prepared by conventional and improved impregnation-reduction method, or microwave heating method.
采用常规浸渍还原法、改进浸渍还原法和高压微波加热法分别制备20%Pt/C催化剂,用X射线衍射(XRD)、透射电镜(TEM)和X射线光电子能谱(XPS)对催化剂表征。
3)  Pt/C catalyst
Pt/C催化剂
1.
Preparation of Pt/C catalysts for hydrophobic catalyst by impregnation and reduction method;
用Pt/C催化剂通过浸渍-还原法制备疏水催化剂
2.
Preparation and characterization of oxo composite Pt/C catalyst and study on its catalytic performance for electro-oxidation of methanol;
含氧复合型Pt/C催化剂的制备、表征及其对甲醇电氧化催化性能的研究
3.
Choosing of Pt/C catalyst preparation method;
Pt/C催化剂制备方法的选择
4)  Pt-Ru/C catalyst
Pt-Ru/C催化剂
1.
The Pt-Ru particles of the Pt-Ru/C catalyst were found to be with high alloying extent, small average size and low relative crystallinity when the Pt-Ru/C catalyst was prepared with the general chemical reduction method in the mixture solution of tetrahydrofuran (THF) and H2O.
与在纯水中制得的Pt-Ru/C催化剂相比,其Pt-Ru粒子的合金化程度高、平均粒径较小且相对结晶度低,因此,该催化剂对甲醇氧化的电催化活性远高于在纯水中制得的Pt-Ru/C催化剂。
2.
The electrocatalytic activity of the Pt-Ru/C catalyst for the methanol oxidation is much higher than that of the commercial E-TEK Pt-Ru/C catalyst with the similar average size and relative crystalli.
在含四氢呋喃(THF)的水溶液中,室温下用NaBH4还原H2PtC l6和RuC l3制得Pt-Ru/C催化剂。
3.
In this paper, we have investigated the reverse micelles method of Pt-Ru/C catalysts prepared for PEMFC.
一般采用引入其它金属元素来解决Pt催化剂CO中毒问题,研究较多的为Pt-Ru/C催化剂。
5)  ineffective Pt/C catalysts
失效Pt/C催化剂
6)  Pt/C electrocatalyst
Pt/C电催化剂
1.
Preparation and characterization of nafion modified Pt/C electrocatalyst
Nafion修饰Pt/C电催化剂的制备与表征
2.
The supported Pt/C electrocatalysts about 3.
采用浸渍还原法制备负载型Pt/C电催化剂,通过制备条件的优化和采用对载体碳材在流动N2气氛中的热处理技术,制备出平均粒径为3。
3.
Highly dispersed Pt/C electrocatalysts with high performance are known to be efficient electrocatalytic material in Proton Exchange Membrane Fuel Cell (PEMFC).
高分散性高活性Pt/C电催化剂被广泛用作质子交换膜燃料电池(PEMFC)的催化剂材料,同时新型纳米碳材料——介孔碳的出现为催化剂载体的选择提供了广阔的前景。
补充资料:Pt/分子筛催化剂
分子式:暂无
分子量:暂无
CAS号:暂无

性质:暂无

制备方法:暂无

用途:暂无

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