Suppr超能文献

脱合金辅助下无表面活性剂<110>高活性 Cu 掺杂 CeO 纳米线的低温 CO 氧化的高产率生长。

Dealloying assisted high-yield growth of surfactant-free <110> highly active Cu-doped CeO nanowires for low-temperature CO oxidation.

机构信息

Key Laboratory for Liquid-Solid Structural Evolution and Processing of Materials (Ministry of Education), School of Materials Science and Engineering, Shandong University, Jingshi Road 17923, Jinan, 250061, P.R. China.

出版信息

Nanoscale. 2017 Jun 14;9(23):8007-8014. doi: 10.1039/c7nr02405c.

Abstract

CeO is widely used as a commercial CO oxidation catalyst, but it suffers from high-temperature (>200 °C) complete conversion. Despite enormous efforts made to promote its low-temperature activity by interfacing CuO and CeO, it is still a long-standing challenge to balance the desired catalytic activity with high-yield preparation. Creating intimate synergistic interfaces between Cu and Ce species and exploring surfactant-free large-scale methods are both critical and challenging. To address these concerns, we synthesized highly active Cu doped CeO nanowires for low-temperature CO oxidation, relying on intentionally maneuvering precursor alloy compositions and a high-yield dealloying method. The favorable one-dimensional doping structure inherited from the nanowire bundles of the as-dealloyed precursors, clean surfaces and intimate synergistic effects between Cu and Ce contribute to excellent CO oxidation performances, with 5% room-temperature conversion triggered at 35 °C and 100% conversion at 100 °C. 96% of O selectivity at 88 °C in CO preferential oxidation was also obtained. The long-term durability for 24 hours at 100% CO conversion without any decay confirms the robust characteristics of the catalysts. Moreover, this work offers some insights into the reasonable design of alloy precursors to realize property-oriented alloys to nanowires batch transformation for the study of industrial catalysts.

摘要

CeO 被广泛用作商用 CO 氧化催化剂,但它在高温(>200°C)下完全转化。尽管通过界面 CuO 和 CeO 来提高其低温活性已经做出了巨大努力,但在平衡所需的催化活性和高产制备方面仍然是一个长期存在的挑战。在 Cu 和 Ce 物种之间创建紧密协同的界面,并探索无表面活性剂的大规模方法,这两者都至关重要且具有挑战性。为了解决这些问题,我们通过有意操纵前驱体合金组成和高产脱合金方法,合成了用于低温 CO 氧化的高活性 Cu 掺杂 CeO 纳米线。得益于从脱合金前体的纳米线束中继承的有利的一维掺杂结构、清洁的表面以及 Cu 和 Ce 之间的紧密协同效应,该催化剂具有出色的 CO 氧化性能,在 35°C 时 5%的 CO 室温转化率,在 100°C 时 100%的 CO 转化率。在 88°C 时,CO 优先氧化的 O 选择性也达到了 96%。在 100% CO 转化率下长达 24 小时的长期耐久性没有任何衰减,证实了催化剂的稳健特性。此外,这项工作为合理设计合金前驱体以实现面向性能的合金到纳米线批量转化提供了一些见解,这对于工业催化剂的研究很有意义。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验