Hallmarks of mechanochemistry: from nanoparticles to technology
Основные признаки механохимии: от наночастиц к технологии
2013-01-01
SCID: 54.1/u7ru6vuh
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extractive metallurgyheterogeneous catalysismechanochemistrynanoparticlesphase transformations
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Abstract (AI)
The aim of this review article on recent developments of mechanochemistry (nowadays established as a part of chemistry) is to provide a comprehensive overview of advances achieved in the field of atomistic processes, phase transformations, simple and multicomponent nanosystems and peculiarities of mechanochemical reactions. Industrial aspects with successful penetration into fields like materials engineering, heterogeneous catalysis and extractive metallurgy are also reviewed. The hallmarks of mechanochemistry include influencing reactivity of solids by the presence of solid-state defects, interphases and relaxation phenomena, enabling processes to take place under non-equilibrium conditions, creating a well-crystallized core of nanoparticles with disordered near-surface shell regions and performing simple dry time-convenient one-step syntheses. Underlying these hallmarks are technological consequences like preparing new nanomaterials with the desired properties or producing these materials in a reproducible way with high yield and under simple and easy operating conditions. The last but not least hallmark is enabling work under environmentally friendly and essentially waste-free conditions (822 references).
Key Findings
1
Mechanochemical processing can produce nanoparticles with well-crystallized cores and disordered near-surface shells.
2
Mechanochemistry has achieved industrial applications in materials engineering, heterogeneous catalysis, and extractive metallurgy, often with environmentally friendly and essentially waste-free processing.
3
Mechanochemistry is established as a chemistry field encompassing atomistic processes, phase transformations, nanosystems, and mechanochemical reaction behavior.
4
Simple, dry, time-efficient one-step syntheses enable reproducible, high-yield production of nanomaterials under straightforward operating conditions.
5
Solid-state defects, interphases, and relaxation phenomena modify the reactivity of solids and enable reactions under nonequilibrium conditions.
Research Object
Mechanochemistry (including atomistic processes, phase transformations, nanosystems, and mechanochemical reactions)
Research Subject
Mechanochemical reactivity, phase transformations, defect- and interphase-mediated non-equilibrium behavior, and technological outcomes
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2013-01-01
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