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Titlebook: Applications of Nanotechnology for Green Synthesis; Inamuddin,Abdullah M. Asiri Book 2020 The Editor(s) (if applicable) and The Author(s),

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Modifications on Polymeric Membranes for Isopropanol Dehydration Using Pervaporation: A Review,conductor and microelectronic industries as a solvent and cleaning substance which generates isopropanol waste in the processes. Not only IPA waste is harmful to landfill but also requires a high management and treatment cost. Therefore, recycling IPA is extremely important from both economic and en
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Green Aspects of Scale-Up Synthesis of Some APIs, Drug Candidates Under Development or Their Criticelopment or their critical intermediates. The process developed should be economical, safe and at the same time using green chemistry concepts with minimal impurity formations and achieving higher yields. While doing so, it is prudent on the part of a chemist to review all the available literature,
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Green Approaches to Synthesize Organic Compounds and Drugs,The implementation and adoption of green chemistry has increasingly gained importance as it minimizes risks to the environment and human health, of exposure to chemicals. It also reduces the production expenses due to reduced solvent usage, reduction in disposal expense, and less energy requirement
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Silver Nanostructures, Chemical Synthesis Methods, and Biomedical Applications,ds including biomedical applications. These nanostructured materials are a class of nanomaterials having dimensions varying from few nm to 100 nm. They offer many fascinating physiochemical properties at this scale as compared to their bulk such as increased surface-to-volume ratio and enhanced elec
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The Role of Heterogeneous Catalysts in Converting Cellulose to Platform Chemicals,lead to replacing fossil fuels by renewable materials. The development of technologies to produce chemicals and fuels from lignocellulosic biomass meets this environmentally friendly concept, thus decreasing fossil fuel dependency. Lignocellulosic biomass is rich in polysaccharides (cellulose and he
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Production of Reduced Graphene Oxide (rGO) from Battery Waste: Green and Sustainable Synthesis and cycle. It contains a graphite rod as a positive electrode. Considering that graphite natural resources are not abundant worldwide and that powder and rod graphite are already being used for graphene synthesis, the use of graphite from these discarded batteries is a cheap, sustainable, and nonhazardo
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