Adopted member (2022-2023)
Group A01 Members
A01 Exploring design guidelines for hetero 2.5D materials by combining data science and first-principles calculations |
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A01 Development of science of Janus atomic layers via atomic layer functionalization |
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A01 Synthesis and thermoelectric applications of 14-group 2.5D materials with high stability |
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A01 Creation and functionalization of 2.5 dimensional nano-spaces based on 2 dimensional assembly of hollow macrocyclic molecules |
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A01 Creation of 2.5D materials by stacking 2D organic crystals with hydrogen bond network |
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A01 Study of 2.5 dimensional moire superlattice by integration of nano-crystal and molecule with layered materials |
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A01 Growth and large-area applications of 2.5D transition metal dichalcogenide nanotubes |
Group A02 Members
A02 Novel buffer layer material for van der waals stacking structures: application of gallium sulfide |
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A02 Novel nanostructures through 1.5-2.5 dimensional expansion |
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A02 Constrcution of transition metal oxide fine crystalline thin films on 2D layerd material toward their functuonality integration |
Group A03 Members
A03 Synthesis and evaluations of 2.5D materials with scanning probe microscopes |
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A03 Real space imaging of catalytically active sites in 2.5D materials |
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A03 Lattice mismatched 2D nano-interface: Understanding and control of heat and charge transport |
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A03 Development of real-time visualization techniques for interlayer intercalation mechanisms at the atomic level |
Group A04 Members
A04 Efficient spin-charge conversion in 2.5 dimensional materials |
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A04 Development of graphene superlattice structure using lattice strain |
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A04 Theoretical design on opt-electronic devices of 2.5D materials |
Group A05 Members
A05 First-principles calculation of thermoelectric effect and spin-orbit coupling coefficients of incommensurate van der waals heterostructures |
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A05 Investigation of carrier transport in 2-dimensional nano space and design of highly functional device by computational science approach |
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A05 Development of novel THz and IR devices by space-dimension control of carbon-based atomic layers |
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A05 Van der waals heterostructure devices based on two-dimensional correlated oxides |