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Titlebook: Emerging Trends in Synthesis and Catalysis in Chemistry; Proceedings of ETSC Sunita Rattan,Bhuvanesh Gupta,Anita Gupta Conference proceedi

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书目名称Emerging Trends in Synthesis and Catalysis in Chemistry
副标题Proceedings of ETSC
编辑Sunita Rattan,Bhuvanesh Gupta,Anita Gupta
视频video
概述Covers various advanced methods of synthesis and applications across diverse research fields.Includes the articles highlighting the development and adoption of innovative catalysts.Provides scientists
丛书名称Springer Proceedings in Materials
图书封面Titlebook: Emerging Trends in Synthesis and Catalysis in Chemistry; Proceedings of ETSC  Sunita Rattan,Bhuvanesh Gupta,Anita Gupta Conference proceedi
描述.This book presents the select papers from the International Symposium on “Emerging Trends in Synthesis and Catalysis” (ETSC 2023). It covers the latest trends in novel synthesis strategies and highly efficient heterogeneous/homogeneous catalytic chemical species. Various topics covered in this book are green synthesis, reaction designs, catalyst synthesis, advanced materials for organic synthesis, polymer synthesis, stereoselective synthesis, flow chemistry, bio-catalysis, organo-catalysis, catalysis for sustainable development and industrial processes, multiphase catalysis, separation science and process development, organometallic compounds in synthesis and catalysis, computational tools for synthetic processes and processes for environment sustainability. The book is useful for researchers, academicians, and industrialists working in material science and industrial chemistry..
出版日期Conference proceedings 2024
关键词Synthesis; Catalysis; Flow chemistry; Drug Design; Computational Tools; Organometallic Compounds
版次1
doihttps://doi.org/10.1007/978-981-97-5169-3
isbn_softcover978-981-97-5171-6
isbn_ebook978-981-97-5169-3Series ISSN 2662-3161 Series E-ISSN 2662-317X
issn_series 2662-3161
copyrightThe Editor(s) (if applicable) and The Author(s), under exclusive license to Springer Nature Singapor
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https://doi.org/10.1007/978-1-4939-3652-6ous scientific disciplines. They are widely used in various applications, including radiation therapy, environmental monitoring, and personal dosimetry. OSL materials have several advantages over traditional dosimeters, including high sensitivity, high spatial resolution, and high accuracy. Addition
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https://doi.org/10.1007/978-1-4615-4517-0ttracted a lot of attention. The creation of materials with improved thermoluminescent qualities, such as higher sensitivity, high radiation response, and stability, has been made possible by the development of novel synthesis pathways and processes. Sol–gel, co-precipitation, and hydrothermal synth
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