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Catalysis in Ionic Liquids: From Catalyst Synthesis to Application, CHAPTER 4 Catalysis in Ionic Liquid–Supercritical CO2 Systems . Mark J. Muldoon
, 2014
, Pages 309-344
Catalysis: Volume 34, Keggin heteropolyacid catalysts: synthesis, heterogenization, and application in conversion of biomass-derived molecules . Khwaja Alamgir Ahmad, Mohammad Haider Siddiqui, Md. Imteyaz Alam, M. Ali Haider, Ejaz Ahmad
, 2022
, Volume 34
, Pages 206-247
Catalysis: Volume 13, Catalytic conversions in water. An environmentally benign concept for heterogenization of homogeneous catalysis . James J. Spivey, Georgios Papadogianakis, Roger A. Sheldon
, 1997
, Volume 13
, Pages 114-194
Nuclear Magnetic Resonance: Volume 46, Recent development and applications of NMR in industry . Maria Victoria Silva Elipe
, 2021
, Volume 46
, Pages 188-219
Noncovalent Interactions in Catalysis, CHAPTER 16 Noncovalent Interactions in Ionic Liquids . Patricia A. Hunt
, 2019
, Pages 350-376
Catalysis in Ionic Liquids: From Catalyst Synthesis to Application, CHAPTER 3 Homogeneous Catalysis in Ionic Liquids . Simon Doherty
, 2014
, Pages 44-308
Synthetic Polymer Chemistry: Innovations and Outlook, CHAPTER 5 Olefin (Co)polymerizations Enabled by Catalyst Design Based on Sidearm Strategy . Jiao-Long Zhou, Xiao-Yan Wang, Xiu-Li Sun, Yong Tang
, 2020
, Pages 129-166
Clean Synthesis Using Porous Inorganic Solid Catalysts and Supported Reagents, Supported reagents . James H. Clark, Christopher N. Rhodes
, 2000
, Pages 55-102
Food Irradiation Technologies: Concepts, Applications and Outcomes, Chapter 14 Chemical Methods . João C. M. Barreira, Amilcar L. Antonio, Isabel C. F. R. Ferreira
, 2018
, Pages 301-313
Polyhydroxyalkanoate (PHA) based Blends, Composites and Nanocomposites, CHAPTER 7 Modification of Polyhydroxyalkanoates (PHAs) . A. M. Gumel, M. H. Aris, M. S. M. Annuar
, 2015
, Pages 141-182