Greener synthesis of chemical compounds and materials

Более экологичный синтез химических соединений и материалов
Oxana V. Kharissova, Boris I. Kharisov, Cesar M. Oliva González, Yolanda Peña Méndez, Israel López
2019-11-01

biosynthesisgreen chemistrynanomaterialssolventless synthesissustainable synthesis
Modern trends in the greener synthesis and fabrication of inorganic, organic and coordination compounds, materials, nanomaterials, hybrids and nanocomposites are discussed. Green chemistry deals with synthesis procedures according to its classic 12 principles, contributing to the sustainability of chemical processes, energy savings, lesser toxicity of reagents and final products, lesser damage to the environment and human health, decreasing the risk of global overheating, and more rational use of natural resources and agricultural wastes. Greener techniques have been applied to synthesize both well-known chemical compounds by more sustainable routes and completely new materials. A range of nanosized materials and composites can be produced by greener routes, including nanoparticles of metals, non-metals, their oxides and salts, aerogels or quantum dots. At the same time, such classic materials as cement, ceramics, adsorbents, polymers, bioplastics and biocomposites can be improved or obtained by cleaner processes. Several non-contaminating physical methods, such as microwave heating, ultrasound-assisted and hydrothermal processes or ball milling, frequently in combination with the use of natural precursors, are of major importance in the greener synthesis, as well as solventless and biosynthesis techniques. Non-hazardous solvents including ionic liquids, use of plant extracts, fungi, yeasts, bacteria and viruses are also discussed in relation with materials fabrication. Availability, necessity and profitability of scaling up green processes are discussed.
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Cleaner processes can synthesize or improve conventional materials such as cement, ceramics, adsorbents, polymers, bioplastics, and biocomposites.
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Green routes produce diverse nanoscale materials, including metal and non-metal nanoparticles, oxides, salts, aerogels, and quantum dots.
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Greener synthesis applies the 12 principles of green chemistry to inorganic, organic, coordination compounds, materials, nanomaterials, hybrids, and nanocomposites.
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Microwave heating, ultrasound, hydrothermal processing, ball milling, solventless synthesis, biosynthesis, natural precursors, and non-hazardous solvents are important enabling techniques.
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Plant extracts and microorganisms, including fungi, yeasts, bacteria, and viruses, can support greener materials fabrication; practical scale-up, availability, and profitability remain important considerations.
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These approaches can reduce energy consumption, reagent and product toxicity, environmental and health damage, global-overheating risks, and inefficient resource use.

Greener synthesis and fabrication processes for chemical compounds and materials, including inorganic, organic, coordination, nano- and composite materials

Sustainability, environmental impact, resource efficiency, and scalability of greener chemical synthesis and materials fabrication routes

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Publication Date
2019-11-01
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Oxana V. Kharissova
Boris I. Kharisov
Cesar M. Oliva González
Yolanda Peña Méndez
Israel López
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