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Local synergetic collaboration between Pd and local tetrahedral symmetric Ni oxide enables ultra-high-performance CO<sub>2</sub> thermal methanation

Che YanDepartment of Engineering and System ScienceChia-Hsin WangHsinchu 30076Moore LinDepartment of ChemistryDinesh BhalothiaDepartment of Engineering and System ScienceShou-Shiun YangDepartment of Engineering and System ScienceGang-Jei FanDepartment of ChemistryJia-Lin WangDepartment of ChemistryTing‐Shan ChanHsinchu 30076Yaolin WangDepartment of Electrical Engineering and ElectronicsXin TuDepartment of Electrical Engineering and ElectronicsSheng DaiEast China University of Science and TechnologyKuan‐Wen WangInstitute of Materials Science and EngineeringJr‐Hau HeCity University of Hong KongTsan‐Yao ChenDepartment of Engineering and System Science
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Abstract

Tetrahedral symmetric NiO<sub>2</sub> and Pd respectively facilitate H<sub>2</sub> splitting and CO<sub>2</sub> to CO reduction and thus enable an ultra-high CH<sub>4</sub> production yield performance in the epitaxial interfaces in the bimetallic NiO<sub>2</sub>@Pd NPs.

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