[HTML][HTML] Vapor phase processing: a novel approach for fabricating functional hybrid materials

K Ashurbekova, K Ashurbekova, G Botta… - …, 2020 - iopscience.iop.org
K Ashurbekova, K Ashurbekova, G Botta, O Yurkevich, M Knez
Nanotechnology, 2020iopscience.iop.org
Materials science is nowadays facing challenges in optimizing properties of materials which
are needed for numerous technological applications and include, but are not limited to,
mechanics, electronics, optics, etc. The key issue is that for emerging applications materials
are needed which incorporate certain properties from polymers or biopolymers and metals
or ceramics at the same time, thus fabrication of functional hybrid materials becomes
inevitable. Routes for the synthesis of functional hybrid materials can be manifold. Among …
Abstract
Materials science is nowadays facing challenges in optimizing properties of materials which are needed for numerous technological applications and include, but are not limited to, mechanics, electronics, optics, etc. The key issue is that for emerging applications materials are needed which incorporate certain properties from polymers or biopolymers and metals or ceramics at the same time, thus fabrication of functional hybrid materials becomes inevitable. Routes for the synthesis of functional hybrid materials can be manifold. Among the explored routes vapor phase processing is a rather novel approach which opts for compatibility with many existing industrial processes. This topical review summarizes the most important approaches and achievements in the synthesis of functional hybrid materials through vapor phase routes with the goal to fabricate suitable hybrid materials for future mechanical, electronic, optical or biomedical applications. Most of the approaches rely on atomic layer deposition (ALD) and techniques related to this process, including molecular layer deposition (MLD) and vapor phase infiltration (VPI), or variations of chemical vapor deposition (CVD). The thus fabricated hybrid materials or nanocomposites often show exceptional physical or chemical properties, which result from synergies of the hybridized materials families. Even though the research in this field is still in its infancy, the initial results encourage further development and promise great application potential in a large variety of applications fields such as flexible electronics, energy conversion or storage, functional textile, and many more.
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