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Sökning: id:"swepub:oai:DiVA.org:ltu-78326" > Wafer-Scale Growth ...

Wafer-Scale Growth of 2D PtTe2 with Layer Orientation Tunable High Electrical Conductivity and Superior Hydrophobicity

Wang, Mengjing (författare)
NanoScience Technology Center, University of Central Florida, Orlando, Florida 32826, United States,University of Central Florida, USA
Ko, Tae-Jun (författare)
NanoScience Technology Center, University of Central Florida, Orlando, Florida 32826, United States,University of Central Florida, USA
Shawkat, Mashiyat Sumaiya (författare)
NanoScience Technology Center, University of Central Florida, Orlando, Florida 32826, United States. Department of Electrical and Computer Engineering, University of Central Florida, Orlando, Florida 32816, United States,University of Central Florida, USA;University of Central Florida, USA
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Han, Sang Sub (författare)
NanoScience Technology Center, University of Central Florida, Orlando, Florida 32826, United States. Department of Materials Science and Engineering, Seoul National University, Seoul 08826, South Korea,University of Central Florida, USA;Seoul National University, Republic of Korea
Okogbue, Emmanuel (författare)
NanoScience Technology Center, University of Central Florida, Orlando, Florida 32826, United States. Department of Electrical and Computer Engineering, University of Central Florida, Orlando, Florida 32816, United States,University of Central Florida, USA;University of Central Florida, USA
Chung, Hee-Suk (författare)
Analytical Research Division, Korea Basic Science Institute, Jeonju 54907, South Korea,Korea Basic Science Institute, Republic of Korea
Bae, Tae-Sung (författare)
Analytical Research Division, Korea Basic Science Institute, Jeonju 54907, South Korea,Korea Basic Science Institute, Republic of Korea
Sattar, Shahid (författare)
Luleå tekniska universitet,Materialvetenskap,Luleå University of Technology, Sweden
Gil, Jaeyoung (författare)
Department of Chemistry, Seoul National University, Seoul 08826, South Korea,Seoul National University, Republic of Korea
Noh, Chanwoo (författare)
Department of Chemistry, Seoul National University, Seoul 08826, South Korea,Seoul National University, Republic of Korea
Oh, Kyu Hwan (författare)
Department of Materials Science and Engineering, Seoul National University, Seoul 08826, South Korea,Seoul National University, Republic of Korea
Jung, YounJoon (författare)
Department of Chemistry, Seoul National University, Seoul 08826, South Korea,Seoul National University, Republic of Korea
Larsson, J. Andreas (författare)
Luleå tekniska universitet,Materialvetenskap,Luleå University of Technology, Sweden
Jung, Yeonwoong (författare)
NanoScience Technology Center, University of Central Florida, Orlando, Florida 32826, United States. Department of Electrical and Computer Engineering, University of Central Florida, Orlando, Florida 32816, United States. Department of Materials Science and Engineering, University of Central Florida, Orlando, Florida 32826, United States,University of Central Florida, USA;University of Central Florida, USA
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 (creator_code:org_t)
2020-02-11
2020
Engelska.
Ingår i: ACS Applied Materials and Interfaces. - : American Chemical Society (ACS). - 1944-8244 .- 1944-8252. ; 12:9, s. 10839-10851
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
Stäng  
  • Platinum ditelluride (PtTe2) is an emerging semimetallic two-dimensional (2D) transition-metal dichalcogenide (TMDC) crystal with intriguing band structures and unusual topological properties. Despite much devoted efforts, scalable and controllable synthesis of large-area 2D PtTe2 with well-defined layer orientation has not been established, leaving its projected structure–property relationship largely unclarified. Herein, we report a scalable low-temperature growth of 2D PtTe2 layers on an area greater than a few square centimeters by reacting Pt thin films of controlled thickness with vaporized tellurium at 400 °C. We systematically investigated their thickness-dependent 2D layer orientation as well as its correlated electrical conductivity and surface property. We unveil that 2D PtTe2 layers undergo three distinct growth mode transitions, i.e., horizontally aligned holey layers, continuous layer-by-layer lateral growth, and horizontal-to-vertical layer transition. This growth transition is a consequence of competing thermodynamic and kinetic factors dictated by accumulating internal strain, analogous to the transition of Frank–van der Merwe (FM) to Stranski–Krastanov (SK) growth in epitaxial thin-film models. The exclusive role of the strain on dictating 2D layer orientation has been quantitatively verified by the transmission electron microscopy (TEM) strain mapping analysis. These centimeter-scale 2D PtTe2 layers exhibit layer orientation tunable metallic transports yielding the highest value of ∼1.7 × 106 S/m at a certain critical thickness, supported by a combined verification of density functional theory (DFT) and electrical measurements. Moreover, they show intrinsically high hydrophobicity manifested by the water contact angle (WCA) value up to ∼117°, which is the highest among all reported 2D TMDCs of comparable dimensions and geometries. Accordingly, this study confirms the high material quality of these emerging large-area 2D PtTe2 layers, projecting vast opportunities employing their tunable layer morphology and semimetallic properties from investigations of novel quantum phenomena to applications in electrocatalysis.

Ämnesord

NATURVETENSKAP  -- Fysik -- Annan fysik (hsv//swe)
NATURAL SCIENCES  -- Physical Sciences -- Other Physics Topics (hsv//eng)

Nyckelord

2D material
platinum ditelluride
PtTe2
vertically aligned layers
hydrophobic
electrical conductivity
Applied Physics
Tillämpad fysik

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