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Clay Mineral Catalysis of Organic Reactions

Clay Mineral Catalysis of Organic Reactions

Autorzy
Wydawnictwo Taylor & Francis Inc
Data wydania 19/07/2018
Liczba stron 440
Forma publikacji książka w twardej oprawie
Poziom zaawansowania Dla szkół wyższych i kształcenia podyplomowego
Język angielski
ISBN 9781498746526
Kategorie Nauki żywe: pojęcia ogólne, Nauki o Ziemi
1 203.30 PLN (z VAT)
$270.68 / €257.99 / £223.96 /
Produkt na zamówienie
Dostawa 5-6 tygodni
Ilość
Do schowka

Opis książki

The book provides insight into the working of clays and clay minerals in speeding up a variety of organic reactions. Clay minerals are known to have a large propensity for taking up organic molecules and can catalyse numerous organic reactions due to fine particle size, extensive surface area, layer structure, and peculiar charge characteristics. They can be used as heterogeneous catalysts and catalyst carriers of organic reactions because they are non-corrosive, easy to separate from the reaction mixture, and reusable. Clays and clay minerals have an advantage over other solid acids as they are abundant, inexpensive, and non-polluting. "Will be of interest to a wide range of researchers in academia and industry. Anyone who wishes to utilize sustainable, easily controlled, high yielding and highly specific processes for the synthesis and production of fine organic compounds, petrochemicals, polymers, pharmaceuticals, etc. will see that clay mineral catalysts can often provide solutions for many such problems."


-Chemistry in New Zealand, April 2019





"An excellent book published by B.K.G. Theng, summarizes the new results of organic catalytic reactions of clay minerals based on a number of professional publications. The book is very important for researchers who are in the field of interface chemistry, catalysis, colloid and environmental chemistry."


-Applied Clay Science Journal, 171 (2019) 133

Clay Mineral Catalysis of Organic Reactions

Spis treści

Clays and Clay Minerals: Structures, Compositions, and Properties. Surface Acidity and Catalytic Activity. Surface Activation and Modification. Organic Catalysis by Clay-Supported Reagents. Clay Mineral Catalysis of Name Reactions. Clay Mineral Catalysis of Isomerization, Dimerization, Oligomerization, and Polymerization Reactions. Clay Mineral Catalysis of Redox, Asymmetric, and Enantioselective Reactions. Clay Mineral Catalysis of Natural Processes and Prebiotic Organic Reactions.

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