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Domain-size effect on the electronic properties of two-dimensional $MoS_2/WS_2$

, , and . Phys. Rev. B, 101 (7): 075129 (February 2020)
DOI: 10.1103/PhysRevB.101.075129

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Multiscale Modeling of Biopolymer Translocation Through a Nanopore., , , and . International Conference on Computational Science (1), volume 4487 of Lecture Notes in Computer Science, page 786-793. Springer, (2007)MUPHY: A parallel MUlti PHYsics/scale code for high performance bio-fluidic simulations., , , , , and . Comput. Phys. Commun., 180 (9): 1495-1502 (2009)Promoting the assembly of carbon onions: An atomistic approach, , , and . physica status solidi (a), 211 (2): 277--287 (December 2013)In silico Complexes of Amino Acids and Diamondoids, , and . ChemPhysChem, 20 (17): 2166--2170 (July 2019)Domain-size effect on the electronic properties of two-dimensional $MoS_2/WS_2$, , and . Phys. Rev. B, 101 (7): 075129 (February 2020)Evidence of molecular clicking on self-assembled monolayers on Au (111) and their properties, , and . Computational materials science, (2023)Threading DNA through nanopores for biosensing applications. Journal of physics. Condensed matter, 27 (27): 273101 (2015)The role of a diamondoid as a hydrogen donor or acceptor in probing DNA nucleobases, , and . The European physical journal. E, Soft matter, (2014)Benchmark investigation of diamondoid-functionalized electrodes for nanopore DNA sequencing, , , and . Nanotechnology, 27 (41): 414002 (2016)Type-dependent identification of DNA nucleobases by using diamondoids, and . ChemPhysChem, 15 (16): 3466-3475 (2014)