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Engineering inorganic interfaces using molecular nanolayers

delete2023-06-27
delete6
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OA
AI
G
Ganpati Ramanath *
C
Collin Rowe
G
Geetu Sharma
V
Venkat Venkataramani
J
Johan G. Alauzun
R
Ravishankar Sundararaman
P
Pawel Keblinski
D
Davide G. Sangiovanni
P
Per Eklund
H
Henrik Pedersen
DOI:10.1063/5.0146122delete
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Abstract

Abstract

En 中文
Advances in interface science over the last 20 years have demonstrated the use of molecular nanolayers (MNLs) at inorganic interfaces to access emergent phenomena and enhance a variety of interfacial properties. Here, we capture important aspects of how a MNL can induce multifold enhancements and tune multiple interfacial properties, including chemical stability, fracture energy, thermal and electrical transport, and electronic structure. Key challenges that need to be addressed for the maturation of this emerging field are described and discussed. MNL-induced interfacial engineering has opened up attractive opportunities for designing organic-inorganic hybrid nanomaterials with high interface fractions, where properties are determined predominantly by MNL-induced interfacial effects for applications.
Keywords:
SELF-ASSEMBLED MONOLAYERS
LEARNING INTERATOMIC POTENTIALS
ELECTRICAL SPIN INJECTION
ALKYL-THIOL MONOLAYERS
METAL WORK FUNCTION
THERMAL CONDUCTANCE
AB-INITIO
DIFFUSION-BARRIERS
ELECTROLESS DEPOSITION
DYNAMICS SIMULATIONS

Journal

Applied Physics Letters cover
Applied Physics Letters
IF:
3.6
Papers:
10.4W
Citations:
17.8W

Organization

C
centre national de la recherche scientifique (cnrs)
Scholars:
24.5W
Papers: 18.2W
Citations: 279
L
Linkoping University
Scholars:
1.6W
Papers: 1.5W
Citations: 184
R
rensselaer polytechnic institute
Scholars:
7.0K
Papers: 6.5K
Citations: 6
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