SinoTechIntel Academic Portal
πŸ›οΈ Indexed Academic Journal

Nano-Micro Letters

Access authentic peer-reviewed engineering methodologies, experimental datasets, and scientific literature published in this journal on SinoTechIntel.

Total Research Papers: 200
Access: 100% Free Open Access
Browse by Publication Year & VolumeReset All Filters βœ•

Published Research PapersFiltered: Year 2025 β€’ 17 β€’ 216

Showing 1 of 200 peer-reviewed papers with full Graphical Abstracts.

Original ResearchVol. 17, Issue 216 β€’ pp. 1-14DOI: 10.1007/s40820-025-01711-6β€’ Apr 14, 2025

100% Conversion of CO2–CH4 with Non-Precious Co@ZnO Catalyst in Hot Water

Authors: Yang Yang, Xu Liu, Daoping He, Fangming Jin

The combination of solar energy and natural hydrothermal systems will innovate the chemistry of CO2 hydrogenation; however, the approach remains challenging due to the lack of robust and cost-effective catalytic system. Here, Zn which can be recycled with solar energy-induced approach was chosen as the reductant and Co as catalyst to achieve robust hydrothermal CO2 methanation. Nanosheets of honeycomb ZnO were grown in situ on the Co surface, resulting in a new motif (Co@ZnO catalyst) that inhibits Co deactivation through ZnO-assisted CoOx reduction. The stabilized Co and interaction between Co and ZnO functioned collaboratively toward the full conversion of CO2–CH4. In situ hydrothermal infrared spectroscopy confirmed the formation of formic acid as an intermediate, thereby avoiding CO formation and unwanted side reaction pathways. This study presents a straightforward one-step process for both highly efficient CO2 conversion and catalyst synthesis, paving the way for solar-driven CO2 methanation.

100% Conversion of CO2–CH4 with Non-Precious Co@ZnO Catalyst in Hot Water
Graphical Abstract