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基于藍寶石襯底的全區(qū)域覆蓋的單層二硫化錸

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  • 基于藍寶石襯底的全區(qū)域覆蓋的單層二硫化錸

  • 基于藍寶石襯底的全區(qū)域覆蓋的單層二硫化錸

  • 基于藍寶石襯底的全區(qū)域覆蓋的單層二硫化錸

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更新時間:2024-06-04 13:20:13瀏覽次數(shù):1125

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產(chǎn)品簡介

供貨周期 一周    
This product contains full area coverage ReS2 monolayers on c-cut sapphire substrates.

詳細介紹

This product contains full area coverage ReS2 monolayers on c-cut sapphire substrates. Sample size measures 1cm in size and the entire sample surface contains monolayer thick ReS2 sheet. Synthesized full area coverage monolayer ReS2 is highly crystalline, some regions also display significant crystalline anisotropy.

 

 

Sample Properties.

Sample size

1cm x 1cm square shaped

Substrate type

Sapphire c-cut (0001)

Coverage

Full monolayer coverage

Electrical properties

1.6 eV Anisotropic Semiconductor (Indirect Bandgap)

Crystal structure

Distorted Tetragonal Phase (1T’)

Unit cell parameters

a = 0.630, b = 0.638 nm, c = 0.643 nm

α = 106.74°, β = 119.03°, γ = 89.97°

Production method

Atmospheric Pressure Chemical Vapor Deposition (APCVD)

Characterization methods

Raman, angle resolved Raman spectroscopy,

photoluminescence, absorption spectroscopy TEM, EDS

Specifications

1)     Full coverage 100% monolayer ReS2 uniformly covered across c-cut sapphire.

2)    . One centimeter in size. Larger sizes up to 2-inch wafer-scale available upon requests.

3)     Atomically smooth surface with roughness < 0.2 nm.

4)     Highly uniform surface morphology. ReS2 monolayers uniformly cover across the sample.

5)    99.9995% purity as determined by nano-SIMS measurements

6)     Repeatable Raman and photoluminescence response

7)     High crystalline quality, Raman response, and photoluminescence emission comparable to single crystalline monolayer flakes.

8)     c-cut Sapphire but our research and development team can transfer ReS2 monolayers onto variety of substrates including PET, quartz, and SiO2/Si without significant compromisation of material quality.

9)     ReS2 monolayers do not contain intentional dopants or defects. However, our technical staff can produce defected ReS2 using α-bombardment technique.

 

Supporting datasets [for 100% Full area ReS2 monolayers on c-cut Sapphire]

Transmission electron images (TEM) and angle resolved Raman spectroscopy measurements acquired from CVD grown full area coverage ReS2 monolayers on c-cut sapphire confirming crystalline anisotropy.

Energy dispersive X-ray spectroscopy (EDX) characterization on CVD grown full area coverage monolayer ReS2 on c-cut sapphire

Raman spectroscopy measurement confirm monolayer nature of the CVD grown samples. Differential reflectance measurements clearly show band gap at 1.6 eV for ReS2 consistent with the existing literature values. PL spectrum only display weak emission at 1.6 eV but significantly stronger at lower temperatures.

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