首页> 外文会议>Symposium on Combinatorial and Artificial Intelligence Methods in Materials Scinece II; 20031201-20031204; Boston,MA; US >COMBINATORIAL SYNTHESIS AND REACTIVITY SCREENING OF ELECTRO-OXIDATION CATALYST GRADIENTS
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COMBINATORIAL SYNTHESIS AND REACTIVITY SCREENING OF ELECTRO-OXIDATION CATALYST GRADIENTS

机译:电氧化催化剂梯度的合成与反应筛选

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摘要

Combinatorial methods represent an appealing experimental method for the discovery of heterogeneous catalysts. One can efficiently identify candidate materials or sample vast regions of composition space using a combination of dense catalyst libraries and high-throughput reactivity screening techniques. This is particularly appealing for the discovery of novel catalysts for low temperature fuel cells where multi-component systems have shown improved performance. For example, the poison tolerance of typical anode catalysts can be improved by the addition of oxophilic components such as ruthenium, molybdenum, tin or osmium. Consequently, a vast composition space must be sampled in order to identify catalyst compositions or regions of composition space with greater activity. Combinatorial methods represent a practical means to speed-up the catalyst discovery process. In this manuscript, we demonstrate a novel method for combinatorial catalyst discovery based upon the synthesis and reactivity mapping of catalyst composition gradients. Samples consisting of uniform variations in surface composition of metals catalysts (Pt-M_1 and Pt-M_1-M_2, where M_1, M_2 = Ru, Mo, Sn or Os) are fabricated using a gel-transfer technique. A concentration gradient of source metal ions is produced in a swollen polymer gel and then transferred onto a surface by electrodeposition to create a continuous composition gradient. An in situ reactivity-mapping tool based on the scanning electrochemical microscope is used to interrogate these catalyst gradients for the hydrogen oxidation reaction in the presence of adsorbed carbon monoxide.
机译:组合方法代表了一种发现多相催化剂的有吸引力的实验方法。使用密集的催化剂库和高通量反应性筛选技术的组合,可以有效地识别候选材料或对组成空间的广大区域进行采样。这对于发现用于低温燃料电池的新型催化剂特别有吸引力,在该催化剂中,多组分系统已显示出改善的性能。例如,可以通过添加亲氧性组分如钌,钼,锡或来提高典型阳极催化剂的抗毒性。因此,必须对巨大的组成空间进行采样,以便识别出具有更大活性的催化剂组成或组成空间的区域。组合方法代表了加速催化剂发现过程的实用手段。在此手稿中,我们展示了一种基于催化剂成分梯度的合成和反应性作图的组合催化剂发现的新方法。使用凝胶转移技术制备了由金属催化剂(Pt-M_1和Pt-M_1-M_2,其中M_1,M_2 = Ru,Mo,Sn或Os)的表面成分均匀变化组成的样品。在溶胀的聚合物凝胶中产生源金属离子的浓度梯度,然后通过电沉积转移到表面上以产生连续的成分梯度。使用基于扫描电化学显微镜的原位反应映射工具,在吸附的一氧化碳存在下,查询这些催化剂梯度,以进行氢氧化反应。

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