This article provides a comprehensive overview of the fundamental principles, mechanisms, and practical methodologies governing catalyst deactivation and regeneration.
This article explores the transformative power of interdisciplinary perspectives in modern catalysis research, a field central to sustainable chemistry and pharmaceutical development.
This article explores the transformative role of machine learning (ML) in accelerating the discovery and optimization of novel catalyst materials.
This article provides a comprehensive exploration of the fundamental catalytic mechanisms underpinning sustainable chemistry, tailored for researchers and drug development professionals.
This article synthesizes current research on the critical role hydrogen bonding plays in controlling catalytic selectivity, a key parameter in synthetic chemistry and drug development.
This comprehensive glossary provides researchers, scientists, and drug development professionals with an authoritative reference for terminology used in heterogeneous catalysis.
This article provides a comprehensive exploration of heterogeneous catalysis, detailing the fundamental surface science principles that govern catalytic activity.
This article explores the paradigm shift in catalytic theory from static chemical bond processes to dynamic regulatory mechanisms governed by weak, non-covalent interactions.
This article provides a thorough exploration of the d-band center theory, a fundamental model in surface science for predicting and tailoring chemisorption properties in catalytic materials.
Explore the fascinating world of macrocyclic complexes - their synthesis, applications in medicine, and future research directions in this comprehensive scientific article.