纳米材料基催化剂
高分辨率透射电子显微镜
催化作用
烧结
正电子湮没谱学
材料科学
空位缺陷
色散(光学)
甲烷化
化学工程
纳米颗粒
扩展X射线吸收精细结构
纳米技术
化学
正电子
吸收光谱法
结晶学
正电子湮没
复合材料
透射电子显微镜
工程类
有机化学
物理
光学
量子力学
电子
作者
Shan He,Changming Li,Hao Chen,Dangsheng Su,Bingsen Zhang,Xingzhong Cao,Baoyi Wang,Min Wei,David G. Evans,Xue Duan
摘要
How to achieve supported metal nanocatalysts with simultaneously enhanced activity and stability is of vital importance in heterogeneous catalysis and remains a challenging goal. In this work, a surface defect-promoted Ni nanocatalyst with a high dispersion and high particle density embedded on a hierarchical Al2O3 matrix was fabricated via a facile method involving an in situ reduction process, which exhibits excellent activity and stability simultaneously for the reaction of CO2 methanation. HRTEM, HAADF-STEM, EXAFS, and positron annihilation spectroscopy demonstrate the existence of abundant surface vacancy clusters that serve as active sites, accounting for the significantly enhanced low-temperature activity of the supported Ni nanoparticles. In addition, the anchoring effect from the support gives rise to a high reaction stability, without sintering and/or aggregation of active species during long-term use.
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