Interfacial thermal transport suppression by hydrogen insertion in an epitaxial Al/Si heterostructure
Abstract
Engineering of interfacial thermal transport is crucial for efficient heat-to-electricity conversion and cooling of electronic devices. Here, we achieve remarkably high interfacial thermal conductance in a series of aluminum/silicon heterostructures grown by molecular beam epitaxy, up to 0.49 GW m−2 K−1 at room temperature, which is ∼29% greater than state-of-the-art values. The pristine interface is near perfect without any notable defects, as confirmed by atomic-resolution transmission electron microscopy. Density functional theory calculations reveal the possible covalent bonding between Al and Si at the interface. Intriguingly, by inserting a monolayer of hydrogen atoms at the interface, the conductance can be reduced by ∼47%. Molecular dynamics simulations show that phonon transmission is primarily suppressed within the frequency range from 2 to 7 THz. Our work highlights the potential of manipulating interfacial thermal transport at the atomic scale and may facilitate diverse applications in thermal management and energy harvesting.
Article Details
Journal Info
Applied Physics Letters
American Institute of Physics
Authors (11)
Menglin Chang
National Laboratory of Solid State Microstructures & Department of Materials Science and Engineering, College of Engineering and Applied Sciences, Nanjing University 1 , Nanjing 210093,
Ziyuan Yuan
National Laboratory of Solid State Microstructures & Department of Materials Science and Engineering, College of Engineering and Applied Sciences, Nanjing University 1 , Nanjing 210093,
Nianjie Liang
Department of Energy and Resources Engineering, Peking University 2 , Beijing 100871,
Xing Fan
School of Physics and Information Technology
Yuxi Wang
Jiayi Li
Yu Deng
Xue-Jun Yan
National Laboratory of Solid State Microstructures & Department of Materials Science and Engineering, College of Engineering and Applied Sciences, Nanjing University 1 , Nanjing 210093,
Ming-Hui Lu
Bai Song
College of Chemistry and Chemical Engineering
Hong Lu
Key Laboratory of Synthetic and Natural Functional Molecule of the Ministry of Education, College of Chemistry & Materials Science