Cleavage reactions play a pivotal role in catalysis, chemical engineering, and technology by facilitating the breakdown of complex molecules into simpler ones. In catalysis, cleavage reactions often involve the activation of specific bonds within molecules, enabling desired transformations. Chemical engineers harness cleavage reactions in processes like biomass conversion or petrochemical refining, where breaking down large molecules into smaller, more valuable ones is essential. Additionally, in technological applications, cleavage reactions contribute to the synthesis of various materials, pharmaceuticals, and energy sources. Understanding the mechanisms behind cleavage reactions allows for the design of efficient catalysts, optimization of chemical processes, and development of innovative technologies with broader industrial implications.
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Serge Cosnier, Universie Grenoble Alpes, France
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Thomas J Webster, Interstellar Therapeutics, United States
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Alexander G Ramm, Kansas State University, United States
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Haibo Ge, Texas Tech University, United States
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Anne M Gaffney, University of South Carolina, United States
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Md Nurul Islam Siddique, University Malaysia Terengganu, Malaysia
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Ziyi Zhong, Guangdong Technion-Israel Institute of Technology, China
Title : Highly rotationally excited N2 of N2O dissociation on Pd(110) surface
Zibo Zhao, Max Planck Institute for Multidisciplinary Sciences, China