4.6 Article

Transition metal dichalcogenide heterojunction PN diode toward ultimate photovoltaic benefits

Journal

2D MATERIALS
Volume 3, Issue 4, Pages -

Publisher

IOP PUBLISHING LTD
DOI: 10.1088/2053-1583/3/4/045011

Keywords

heterojunction; PN diode; photovoltaic; van der Waals; PV switching

Funding

  1. NRF (NRL program) [2014R1A2A1A01004815]
  2. Creative Materials Discovery Program through NRF - Ministry of Science, ICT and Future Planning [2015M3D1A1068061]
  3. Korea Evaluation Institute of Industrial Technology [10042433-2012-11]
  4. Yonsei University (Future-leading Research Initiative) [2014-22-0168]
  5. Brain Korea 21 plus Program
  6. Korea Evaluation Institute of Industrial Technology (KEIT) [10042433] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)
  7. National Research Foundation of Korea [2014R1A2A1A01004815, 2015M3D1A1068061] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

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Recently, two-dimensional (2D) transition metal dichalcogenide (TMDC) semiconductors as van der Waals (vdW) materials have attracted much attention from researchers. Among many 2DTMDC materials, a few layer-thin molybdenum disulfide (MoS2) and tungsten diselenide (WSe2) have been most intensively studied respectively as 2D n- and p-type semiconductors. Here, we have fabricated vertical vdW heterojunction n-MoS2/p-WSe2 diode with a few tens nm-thick layers by using vertically-sandwiched ohmic terminals, so that no quasi neutral region may exist between two terminals. As a result, we obtained high photo responsivity at zero volt without any electric power, and it appears comparable to those of commercially-optimized SiPN diode. Photo-voltage output of 0.3 V was easily obtained from our vdWPN diode as open circuit voltage, and can be doubled up to 0.6 Vby using two PN diodes. These beneficial photovoltaic results from vdWPN diode were directly applied to PV switching dynamics and transistor photo gating, for the first time. We regard that our vdW n-MoS2/p-WSe2 heterojunction diode could maximize its photovoltaic energy benefits with optimized TMDC thicknesses.

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