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Accessing negative Poisson`s ratio of graphene by machine learning interatomic potentials
Free accessArXiv | 2022| -
Accessing negative Poisson’s ratio of graphene by machine learning interatomic potentials
IOP Institute of Physics | 2022| -
Activated lone-pair electrons lead to low lattice thermal conductivity: a case study of boron arsenide
Free accessArXiv | 2019| -
Activated Lone-Pair Electrons Lead to Low Lattice Thermal Conductivity: A Case Study of Boron Arsenide
American Chemical Society | 2023| -
Alloying enhanced negative Poisson's ratio in two-dimensional aluminum gallium nitride (AlxGa1−xN)
Royal Society of Chemistry | 2024| -
Alloying Reversed Anisotropy of Thermal Transport in Bulk Al0.5Ga0.5N
American Chemical Society | 2023| -
Anisotropic intrinsic lattice thermal conductivity of phosphorene from first principles
Online Contents | 2015| -
Anisotropic intrinsic lattice thermal conductivity of phosphorene from first principles
National licenceRoyal Society of Chemistry | 2015| -
Anisotropic intrinsic lattice thermal conductivity of phosphorene from first principles
Free accessArXiv | 2014| -
Anisotropic thermal and electrical transport properties induced high thermoelectric performance in an Ir2Cl2O2 monolayer
Royal Society of Chemistry | 2022| -
Anisotropy of thermal transport in phosphorene: a comparative first-principles study using different exchange–correlation functionals
Free accessRoyal Society of Chemistry | 2022| -
Anomalous thermal transport behavior in graphene-like carbon nitride (C$_3$N)
Free accessArXiv | 2019| -
Anomalous thermal transport behavior in graphene-like carbon nitride (C3N)
Royal Society of Chemistry | 2022|
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