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Mechanochemistry: opportunities for new and cleaner synthesis

TLDR
Concentrating on recent advances, this article covers industrial aspects, inorganic materials, organic synthesis, cocrystallisation, pharmaceutical aspects, metal complexes, supramolecular aspects and characterization methods.
Abstract
The aim of this critical review is to provide a broad but digestible overview of mechanochemical synthesis, i.e. reactions conducted by grinding solid reactants together with no or minimal solvent. Although mechanochemistry has historically been a sideline approach to synthesis it may soon move into the mainstream because it is increasingly apparent that it can be practical, and even advantageous, and because of the opportunities it provides for developing more sustainable methods. Concentrating on recent advances, this article covers industrial aspects, inorganic materials, organic synthesis, cocrystallisation, pharmaceutical aspects, metal complexes (including metal–organic frameworks), supramolecular aspects and characterization methods. The historical development, mechanistic aspects, limitations and opportunities are also discussed (314 references).

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The Halogen Bond

TL;DR: The specific advantages brought up by a design based on the use of the halogen bond will be demonstrated in quite different fields spanning from material sciences to biomolecular recognition and drug design.
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Chemical, thermal and mechanical stabilities of metal–organic frameworks

TL;DR: In this paper, the chemical, thermal and mechanical stabilities of MOFs, in particular with catalytic uses in mind, are discussed, and future directions of study for the production of highly stable MOFs are briefly discussed.
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Green and Sustainable Solvents in Chemical Processes

TL;DR: This Review considers several aspects of the most prominent sustainable organicsolvents in use today, ionic liquids, deep eutectic solvents, supercritical fluids, switchable solVents, liquid polymers, and renewable solvent, giving a more complete picture of the current status of sustainable solvent research and development.
Journal ArticleDOI

Tools and techniques for solvent selection: green solvent selection guides

TL;DR: A review of general purpose solvent selection guides can be found in this paper, highlighting their similarities and differences and how they can be used to enhance the greenness of chemical processes, particularly in laboratory organic synthesis and the pharmaceutical industry.
References
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Journal ArticleDOI

Engineering of porous π-stacked solids using mechanochemistry

TL;DR: In this article, a charge-assisted π-stacking interaction result in the formation of large porous arrays formed from the inclusion of metal πtris(phenanthroline) cations into p-sulfonatocalix[4]arene ======¯¯¯¯¯¯anions.
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Solid state interconversions of coordination networks and hydrogen-bonded salts

TL;DR: Thermal or chemical treatment of crystalline 4,4-bipyridinium salts of [MCl4]2- (M=Co, Zn, Fe, or Pt) leads to HCl loss and formation of coordination network solids [{MCl2(4,4,bipy)}n].
Journal ArticleDOI

Selective formation of hydrogen bonded cocrystals between a sulfonamide and aromatic carboxylic acids in the solid state

TL;DR: In this paper, it was shown that sulfadimidine selectively cocrystallizes with 2-aminobenzoic acid when the latter is present in binary mixtures of acids.
Journal ArticleDOI

Mechanochemical preparation and investigation of properties of magnesium, calcium and lithium–magnesium alanates

TL;DR: Ball milling of MgCl 2 and CaCl 2 with NaAlH 4 or LiAlH4 can be used for the preparation of magnesium, calcium and lithium-magnesium alanates in mixture with NaCl or LiCl as mentioned in this paper.
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