Boddula / Asiri / Inamuddin | Green Sustainable Process for Chemical and Environmental Engineering and Science | Buch | 978-0-12-821887-7 | www.sack.de

Buch, Englisch, 298 Seiten, Format (B × H): 191 mm x 235 mm, Gewicht: 517 g

Boddula / Asiri / Inamuddin

Green Sustainable Process for Chemical and Environmental Engineering and Science

Green Inorganic Synthesis
Erscheinungsjahr 2020
ISBN: 978-0-12-821887-7
Verlag: Elsevier Inc

Green Inorganic Synthesis

Buch, Englisch, 298 Seiten, Format (B × H): 191 mm x 235 mm, Gewicht: 517 g

ISBN: 978-0-12-821887-7
Verlag: Elsevier Inc


Green Sustainable Process for Chemical and Environmental Engineering and Science: Green Inorganic Synthesis provides an in-depth review of the synthesis of inorganic materials utilizing green chemistry protocols. It summarizes the green synthesis methods used for the preparation, processing and development of inorganic materials. The methods for the synthesis of various inorganic materials includes microwaves, sonochemical, electrochemical, bioinspired, enzyme mediated, sol-gel, solid state, etc. It also includes green-solvents driven inorganic material synthesis using ionic liquids, supercritical fluids, plant-derived materials, and microorganisms. The content of this book provides useful information which may be used to inspire the readers to new synthetic routes for sustainable inorganic synthesis. This book brings together panels of highly-accomplished experts in the field of inorganic chemistry. It is a unique book, extremely well structured and essential resource for undergraduate, postgraduate students, faculty, R&D professionals, production chemists, environmental engineers, and industrial experts.

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Weitere Infos & Material


1. Characterization techniques involved in inorganic green synthesis
2. Microwave-assisted green synthesis of inorganic nanomaterials
3. Sonochemical synthesis of inorganic nanomaterials
4. Biosynthesis of inorganic nanomaterials
5. Green photosynthesis of inorganic nanomaterials
6. Green electrosynthesis of inorganic nanomaterials
7. Bioinspired synthesis of inorganic nanomaterials
8. Green synthesis of inorganic nanoparticle using microemulsion methods
9. Templated synthesis of inorganic nanomaterials
10. Enzyme-mediated synthesis of inorganic nanomaterials
11. Deep-eutectic solvents for inorganic nanomaterials synthesis
12. Polysaccharides for inorganic nanomaterials synthesis
13. Sol-gel synthesis of inorganic nanomaterials
14. Conversion of organic precursors to inorganic nanomaterials
15. Solid-state green synthesis of inorganic nanomaterials
16. Top-down and bottom-up approaches for inorganic materials synthesis
17. Ionic-liquid assisted synthesis of inorganic nanomaterials
18. Supercritical fluids for inorganic nanomaterials synthesis
19. Phytoextracts-mediated synthesis of inorganic nanomaterials
20. Synthesis of inorganic nanomaterials in aqueous medium
21. Synthesis of inorganic nanomaterials using carbohydrates
22. Deposition methods for inorganic nanomaterials
23. Synthesis of inorganic nanomaterials using microorganisms
24. Tailor-made synthesis of inorganic nanomaterials
25. Challenges and perspectives for inorganic green synthesis pathways



Dr. Inamuddin, is an Assistant professor at Department of Applied Chemistry, Zakir Husain College of Engineering and Technology, Faculty of Engineering and Technology, Aligarh Muslim University, Aligarh, India. He has extensive research experience in multidisciplinary fields of analytical chemistry, materials chemistry, electrochemistry, renewable energy and environmental science. He has worked on different research projects funded by various government agencies and universities and is the recipient of awards, including the Fast-Track Young Scientist Award and young researcher of the year award-2020 of the university. His current research interests include ion exchange materials, a sensor for heavy metal ions, biofuel cells, supercapacitors and bending actuators.

Asiri, Abdullah M.
Prof. Abdullah M. Asiri is the Head of the Chemistry Department at King Abdulaziz University since October 2009 and he is the founder and the Director of the Center of Excellence for Advanced Materials Research (CEAMR) since 2010 till date. He is the Professor of Organic Photochemistry. His research interest covers color chemistry, synthesis of novel photochromic and thermochromic systems, synthesis of novel coloring matters and dyeing of textiles, materials chemistry, nanochemistry and nanotechnology, polymers and plastics. A major achievement of Prof. Asiri is the discovery of tribochromic compounds, a class of compounds which change from slightly or colorless to deep colored when subjected to small pressure or when grind. This discovery was introduced to the scientific community as a new terminology published by IUPAC in 2000. This discovery was awarded a patent from European Patent office and from UK patent. He is also a member of the Editorial Board of various journals of international repute. He is the Vice- President of Saudi Chemical Society (Western Province Branch). He holds four USA patents, more than 800 Publications in international journals, seven book chapters, and ten books

Boddula, Rajender
Prof. Dr. Rajender Boddula currently serves as an Associate Professor, in the School of Sciences, at Woxsen University, Hyderabad, Telangana, India. He is also an Adjunct Professor, at Graphic Era Hill University, in India. He attained his MSc in Organic Chemistry, (Kakatiya University, 2008) and PhD from Kakatiya University and CSIR–Indian Institute of Chemical Technology, Hyderabad, India (2014). His doctoral work focused on polyaniline-based materials for supercapacitor and catalytic applications, which laid a strong interdisciplinary foundation for his research career. Following his doctorate, Dr. Boddula pursued a distinguished postdoctoral trajectory across several major global research centers. He was awarded the Chinese Academy of Sciences President’s International Fellowship (CAS-PIFI) and conducted research at the National Center for Nanoscience and Technology, in Beijing. He further refined his expertise as a postdoctoral researcher at the National Tsing-Hua University, in Taiwan, and at the Center for Advanced Materials, at Qatar University. His postdoctoral work encompassed advanced novel nanomaterials, drug delivery, catalysis, hydrogen energy, and CO2 valorization, driving sustainable solutions for energy and environmental challenges. Professor Boddula’ s major research interests span next-gen materials, green catalysis, environmental remediation, sustainable energy conversion & storage technologies, and hydrogen energy.



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