...
首页> 外文期刊>Catalysis science & technology >Cu@ZIF-8 derived inverse ZnO/Cu catalyst with sub-5 nm ZnO for efficient CO2 hydrogenation to methanol
【24h】

Cu@ZIF-8 derived inverse ZnO/Cu catalyst with sub-5 nm ZnO for efficient CO2 hydrogenation to methanol

机译:Cu@ZIF-8派生逆氧化锌/铜催化剂为有效的二氧化碳加氢sub-5纳米氧化锌甲醇

获取原文
获取原文并翻译 | 示例
           

摘要

Maximizing the Cu-ZnO interface is regarded as the best strategy to promote methanol synthesis activity over CuZn catalysts. Reducing the ZnO particle size can enhance the Cu-ZnO interaction, but its synthesis with a sub-5 nm size still remains a challenge. Moreover, the fabrication of an active powder catalyst with an inverse ZnO/Cu configuration is still very rare. In this work, we report a facile synthesis of inverse ZnO/Cu catalysts by direct calcination of Cu@ZIF-8 (zeolitic imidazolate framework-8). The particle size of ZnO and Cu can be tuned by changing the Cu loading as well as the calcination temperature. Importantly, inverse ZnO/Cu catalysts with sub-5 nm ZnO were obtained under gentle calcination at 623 K. In the CO2 hydrogenation reaction, the highest methanol synthesis activity reached 933 g kg(cat)(-1) h(-1) at 533 K and 4.5 MPa, with a high turnover frequency (TOF) of 0.013 s(-1), over an optimized C2Z-623 catalyst, which exceeds the commercial CuZnAl catalyst (HiFuel R120, Johnson Matthey) and has ranked the top reported value over advanced CuZn catalysts under comparable conditions. Such excellent activity is attributed to the inverse structure of Cu particles covered by sub-5 nm ZnO, which promotes the intimate Cu-ZnO interface with enhanced SMSI. Moreover, we find that the methanol turnover frequency (TOF) monotonically increases with decreasing the particle size of ZnO as well as Cu. It is proposed that reducing the ZnO size favors the spillover of reducible ZnOx species onto the Cu surface while lowering the Cu size is responsible for the enhanced amount of exposed Cu steps for accommodating Zn species, both of which could facilitate the formation of Zn covered Cu steps as active sites for methanol synthesis.
机译:最大化Cu-ZnO界面被认为是最好的策略,促进甲醇合成活动在CuZn催化剂。粒度可以提高Cu-ZnO互动,但其合成sub-5纳米大小仍然是一个挑战。积极与逆氧化锌/铜粉末催化剂配置还是非常罕见的。我们报告一个灵巧的逆合成氧化锌/铜通过直接煅烧Cu@ZIF-8催化剂(沸石的imidazolate framework-8)。氧化锌的大小和铜可以通过改变铜加载以及煅烧温度。得到了催化剂与sub-5纳米氧化锌在623 K温柔的煅烧。加氢反应,甲醇最高合成活动达到933 g公斤(cat) (1)在533 K和h (1) 4.5 MPa,高营业额频率(TOF) 0.013(1),在一个优化c2z - 623催化剂,这超过了商业Johnson Matthey CuZnAl催化剂(HiFuel R120,)和报道价值放在第一位先进CuZn催化剂在具有可比性条件。逆矩阵结构的铜颗粒覆盖sub-5纳米氧化锌,促进亲密与增强SMSI Cu-ZnO接口。发现甲醇周转频率(TOF)单调增加而减少氧化锌的颗粒大小以及铜。建议减少氧化锌大小支持可约ZnOx物种的溢出到铜表面同时降低铜大小是负责任的为增强暴露铜步骤适应锌物种,两者都可以促进锌覆盖铜的形成步骤作为甲醇合成的活跃的网站。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号