Literature DB >> 24988370

Strain-induced indirect to direct bandgap transition in multilayer WSe2.

Sujay B Desai1, Gyungseon Seol, Jeong Seuk Kang, Hui Fang, Corsin Battaglia, Rehan Kapadia, Joel W Ager, Jing Guo, Ali Javey.   

Abstract

Transition metal dichalcogenides, such as MoS2 and WSe2, have recently gained tremendous interest for electronic and optoelectronic applications. MoS2 and WSe2 monolayers are direct bandgap and show bright photoluminescence (PL), whereas multilayers exhibit much weaker PL due to their indirect optical bandgap. This presents an obstacle for a number of device applications involving light harvesting or detection where thicker films with direct optical bandgap are desired. Here, we experimentally demonstrate a drastic enhancement in PL intensity for multilayer WSe2 (2-4 layers) under uniaxial tensile strain of up to 2%. Specifically, the PL intensity of bilayer WSe2 is amplified by ∼ 35× , making it comparable to that of an unstrained WSe2 monolayer. This drastic PL enhancement is attributed to an indirect to direct bandgap transition for strained bilayer WSe2, as confirmed by density functional theory (DFT) calculations. Notably, in contrast to MoS2 multilayers, the energy difference between the direct and indirect bandgaps of WSe2 multilayers is small, thus allowing for bandgap crossover at experimentally feasible strain values. Our results present an important advance toward controlling the band structure and optoelectronic properties of few-layer WSe2 via strain engineering, with important implications for practical device applications.

Entities:  

Year:  2014        PMID: 24988370     DOI: 10.1021/nl501638a

Source DB:  PubMed          Journal:  Nano Lett        ISSN: 1530-6984            Impact factor:   11.189


  31 in total

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2.  Actively variable-spectrum optoelectronics with black phosphorus.

Authors:  Hyungjin Kim; Shiekh Zia Uddin; Der-Hsien Lien; Matthew Yeh; Nima Sefidmooye Azar; Sivacarendran Balendhran; Taehun Kim; Niharika Gupta; Yoonsoo Rho; Costas P Grigoropoulos; Kenneth B Crozier; Ali Javey
Journal:  Nature       Date:  2021-08-11       Impact factor: 49.962

Review 3.  Optical Inspection of 2D Materials: From Mechanical Exfoliation to Wafer-Scale Growth and Beyond.

Authors:  Yang-Chun Lee; Sih-Wei Chang; Shu-Hsien Chen; Shau-Liang Chen; Hsuen-Li Chen
Journal:  Adv Sci (Weinh)       Date:  2021-10-29       Impact factor: 16.806

4.  Solvent composition regulates the Se : Sb ratio in antimony selenide nanowires deposited from thiol-amine solvent mixtures.

Authors:  A Vashishtha; O Vana; E Edri
Journal:  Nanoscale Adv       Date:  2021-12-20

5.  Continuously tunable electronic structure of transition metal dichalcogenides superlattices.

Authors:  Yong-Hong Zhao; Feng Yang; Jian Wang; Hong Guo; Wei Ji
Journal:  Sci Rep       Date:  2015-02-13       Impact factor: 4.379

6.  Giant photoluminescence enhancement in tungsten-diselenide-gold plasmonic hybrid structures.

Authors:  Zhuo Wang; Zhaogang Dong; Yinghong Gu; Yung-Huang Chang; Lei Zhang; Lain-Jong Li; Weijie Zhao; Goki Eda; Wenjing Zhang; Gustavo Grinblat; Stefan A Maier; Joel K W Yang; Cheng-Wei Qiu; Andrew T S Wee
Journal:  Nat Commun       Date:  2016-05-06       Impact factor: 14.919

7.  Strain-Induced Spatial and Spectral Isolation of Quantum Emitters in Mono- and Bilayer WSe2.

Authors:  S Kumar; A Kaczmarczyk; B D Gerardot
Journal:  Nano Lett       Date:  2015-10-26       Impact factor: 11.189

8.  Simulation Evidence of Hexagonal-to-Tetragonal ZnSe Structure Transition: A Monolayer Material with a Wide-Range Tunable Direct Bandgap.

Authors:  Lei Li; Pengfei Li; Ning Lu; Jun Dai; Xiao Cheng Zeng
Journal:  Adv Sci (Weinh)       Date:  2015-10-28       Impact factor: 16.806

9.  Emission energy, exciton dynamics and lasing properties of buckled CdS nanoribbons.

Authors:  Qi Wang; Liaoxin Sun; Jian Lu; Ming-Liang Ren; Tianning Zhang; Yan Huang; Xiaohao Zhou; Yan Sun; Bo Zhang; Changqing Chen; Xuechu Shen; Ritesh Agarwal; Wei Lu
Journal:  Sci Rep       Date:  2016-05-23       Impact factor: 4.379

10.  Interface strain in vertically stacked two-dimensional heterostructured carbon-MoS2 nanosheets controls electrochemical reactivity.

Authors:  Landon Oakes; Rachel Carter; Trevor Hanken; Adam P Cohn; Keith Share; Benjamin Schmidt; Cary L Pint
Journal:  Nat Commun       Date:  2016-06-03       Impact factor: 14.919

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