Synergistic hole-doping on ultrathin MoTe2 for highly stable unipolar field-effect transistor

  • Nguyen, Phuong Huyen
  • Nguyen, Duc Hieu
  • Kim, Hyojung
  • Jeong, Hyung Mo
  • Oh, Hye Min
  • ... Jeong, Mun Seok
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초록

Despite an appropriate energy bandgap and potential to achieve unipolar p-type from initial ambipolar, the oxidative sensitivity nature of monolayer MoTe2 has hindered its further device development for practical electronic and optoelectronic applications. Here, we demonstrate a facile superacid (TFSI) doping approach to construct a highly stable unipolar p-type MoTe2 at the atomically thin limit, without harnessing its structure. From Raman analysis, a controllable hole-doping effect of MoTe2 is evident by tuning the TFSI molarity (м). Considerable shifts and sharpening in A1g peaks were observed, indicating the p-doping effect induced by TFSI treatment. When combining this technique with PMMA encapsulation, the obtained monolayer MoTe2 field-effect transistor (FET) displays dramatic conversion from ambipolar to unipolar p-type, high on/off ratio of 106, and mobility increases of up to 250 times, which is among the highest mobility increment factor to date. By integrating X-ray photoelectron spectroscopy (XPS), Raman spectroscopy, and atomic force microscopy techniques, it is further clarified that the hydrogen bonds between PMMA and TFSI are a key mechanism to enable oxidation prevention while also synergizing the doping effect of TFSI via an efficient electron-withdrawing network on monolayer MoTe2 FET.

키워드

Atomically thin TMDSurface charge-transfer dopingHydrogen-bonding interactionCarrier -type modulationSynergistic effectMETALMOS2REDUCTIONPOLARITYYIELDWS2
제목
Synergistic hole-doping on ultrathin MoTe2 for highly stable unipolar field-effect transistor
저자
Nguyen, Phuong HuyenNguyen, Duc HieuKim, HyojungJeong, Hyung MoOh, Hye MinJeong, Mun Seok
DOI
10.1016/j.apsusc.2022.153567
발행일
2022-09
유형
Article
저널명
Applied Surface Science
596
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