Abstract
Extensive studies have been performed to understand the structure-property relationship in nanotwinned (NT) metals, where the average twin thickness or twin spacing is less than 100 nm. NT metals may have high strength, ductility, good electrical conductivity and corrosion resistance and have promising applications in microelectronics, structural materials and coatings for gas and oil industry. Most prior studies focus on the computational and experimental investigations of NT metals with low stacking fault energy (SFE) and often in polycrystalline forms. Here we review recent findings on epitaxial growth of NT metals and alloys with low and high SFEs deposited on single crystal substrates, and focus primarily on advancing our comprehension towards tailoring the microstructures and properties of NT metalsviaextrinsic factors, including the synthesis technique, parametric control and growth template, and intrinsic factors, such as SFE and thermodynamic, kinetic alloying effects. The review intends to illuminate how to synthesize and design epitaxial NT structures to achieve desirable properties.
Original language | English |
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Pages (from-to) | 6637-6649 |
Number of pages | 13 |
Journal | CrystEngComm |
Volume | 23 |
Issue number | 38 |
DOIs | |
State | Published - Oct 14 2021 |
Externally published | Yes |
Funding
The works on NT Ni and Al alloys were supported by DoE-BES under grant no. DE-SC0016337. The works on NT Cu and its alloys were supported by NSF-CMMI-1728419. The authors also thank Dr. Daniel Bufford (Sandia National Laboratories) for the image contribution and discussion.