Bulletin of the American Physical Society
APS March Meeting 2018
Volume 63, Number 1
Monday–Friday, March 5–9, 2018; Los Angeles, California
Session B06: Undergraduate Research II
11:15 AM–2:15 PM,
Monday, March 5, 2018
LACC
Room: 153A
Sponsoring
Units:
APS SPS
Chair: Kiril Streletzky, Cleveland State Univ
Abstract ID: BAPS.2018.MAR.B06.6
Abstract: B06.00006 : Chemical Vapor Deposition of Two-Dimensional Heterostructures
12:15 PM–12:27 PM
Presenter:
Tania Diaz Marquez
(Physics, University of Puerto Rico-Mayagüez)
Authors:
Tania Diaz Marquez
(Physics, University of Puerto Rico-Mayagüez)
Prasana Sahoo
(Physics, University of South Florida-Tampa )
Humberto Gutierrez
(Physics, University of South Florida-Tampa )
studied for their potential applications in opto-electronics, given their distinct structural and
electro-optical properties. Laterally stacked TMD heterostructures are crucial components for
constructing p-n junctions, light-emitting diodes, photovoltaic devices, and tunneling transistors. A
large scale and controlled growth of these lateral heterostructures is necessary to exploit the
TMDs potential for applications in flexible nanoelectronics. The objective of this research was to
optimize the growth of laterally connected semiconducting MoSe2-WSe2 and MoS2-WS2 bilayer
heterostructures, using the Chemical Vapor Deposition (CVD) technique. This synthesis method is
relatively simple, and allows the fabrication of single and multiple junction heterostructures with
the change of the carrier gas supplied during growth. Through Raman and Photoluminescence
characterization, the heterostructure samples were examined to confirm chemical composition,
structural homogeneity, and distinguishable interfaces of the TMDs heterojunctions. The optimal
conditions for the bilayer growth of MoSe2-WSe2 and MoS2-WS2 heterostructures were established
and the growth was repeated to corroborate effective replication.
To cite this abstract, use the following reference: http://meetings.aps.org/link/BAPS.2018.MAR.B06.6
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