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Deep Multi-Modal Skin-Imaging-Based Information-Switching Network for Skin Lesion Recognition
All articles published by MDPI are made immediately available worldwide under an open access license. No special permission is required to reuse all or part of the article published by MDPI, including figures and tables. For articles published under an open access Creative Common CC BY license, any part of the article may be reused without permission provided that the original article is clearly cited. For more information, please refer to https://www.mdpi.com/openaccess.
An in-depth simulation analysis of the reaction mechanism of ethanol dehydration to ethylene and carbon deposition on the γ-Al2O3(100) surface
An in-depth simulation analysis of the reaction mechanism of ethanol dehydration to ethylene and carbon deposition on the γ-Al2O3(100) surface Ethylene serves as a pivotal chemical commodity, often regarded as a barometer of a nation's petrochemical industry sophistication. The conversion of biomass-derived ethanol into ethylene through dehydration represents an avenue ripe with developmental potential and expansive application horizons.
Theoretical study coupling DFT calculations and kMC simulation of CO methanation on Ni(111) and Ni3Fe(111)
Theoretical study coupling DFT calculations and kMC simulation of CO methanation on Ni(111) and Ni3Fe(111)† Obtaining synthetic natural gas from coal is an effective way to alleviate the contradiction between supply and demand of natural gas, realize clean and efficient utilization of coal, and promote the development of energy transformation. Syngas methanation is the core technology of coal-to-natural gas conversion, in which an efficient catalyst is the key.
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