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thin cdte film  (Excelitas corp)


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    Structured Review

    Excelitas corp thin cdte film
    Thin Cdte Film, supplied by Excelitas corp, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/thin+cdte+film/pmc12072811-241-23-43?v=Excelitas+corp
    Average 90 stars, based on 1 article reviews
    thin cdte film - by Bioz Stars, 2026-07
    90/100 stars

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    Image Search Results


    Schematic representation of (a) classical technique apparatus and (b) cryogenic technique apparatus for the CdTe thin film production.

    Journal: ACS Omega

    Article Title: Fabrication and Characterization of CdTe Thin Films: Insights into Classical and Cryogenic Fabrication Techniques

    doi: 10.1021/acsomega.4c07171

    Figure Lengend Snippet: Schematic representation of (a) classical technique apparatus and (b) cryogenic technique apparatus for the CdTe thin film production.

    Article Snippet: Powder X-ray diffraction (PXRD) analyses for determining the crystal structure of the CdTe thin films were performed using a Panalytical Empyrean device with Cu Kα (λ = 1.5408 Å) radiation for a 2θ coupled mode in a range of 10–80° with a step size of 0.02°.

    Techniques:

    PXRD patterns of CdTe thin films at different substrate temperatures.

    Journal: ACS Omega

    Article Title: Fabrication and Characterization of CdTe Thin Films: Insights into Classical and Cryogenic Fabrication Techniques

    doi: 10.1021/acsomega.4c07171

    Figure Lengend Snippet: PXRD patterns of CdTe thin films at different substrate temperatures.

    Article Snippet: Powder X-ray diffraction (PXRD) analyses for determining the crystal structure of the CdTe thin films were performed using a Panalytical Empyrean device with Cu Kα (λ = 1.5408 Å) radiation for a 2θ coupled mode in a range of 10–80° with a step size of 0.02°.

    Techniques:

    FESEM images of CdTe thin films produced on the glass substrate at different substrate temperatures (a) 573, (b) 473, (c) 373, (d) 300, (e) 200, and (f) 100 K

    Journal: ACS Omega

    Article Title: Fabrication and Characterization of CdTe Thin Films: Insights into Classical and Cryogenic Fabrication Techniques

    doi: 10.1021/acsomega.4c07171

    Figure Lengend Snippet: FESEM images of CdTe thin films produced on the glass substrate at different substrate temperatures (a) 573, (b) 473, (c) 373, (d) 300, (e) 200, and (f) 100 K

    Article Snippet: Powder X-ray diffraction (PXRD) analyses for determining the crystal structure of the CdTe thin films were performed using a Panalytical Empyrean device with Cu Kα (λ = 1.5408 Å) radiation for a 2θ coupled mode in a range of 10–80° with a step size of 0.02°.

    Techniques: Produced

    Variation of particle size and void density values of CdTe thin films depends on different substrate temperatures.

    Journal: ACS Omega

    Article Title: Fabrication and Characterization of CdTe Thin Films: Insights into Classical and Cryogenic Fabrication Techniques

    doi: 10.1021/acsomega.4c07171

    Figure Lengend Snippet: Variation of particle size and void density values of CdTe thin films depends on different substrate temperatures.

    Article Snippet: Powder X-ray diffraction (PXRD) analyses for determining the crystal structure of the CdTe thin films were performed using a Panalytical Empyrean device with Cu Kα (λ = 1.5408 Å) radiation for a 2θ coupled mode in a range of 10–80° with a step size of 0.02°.

    Techniques:

    Three-dimensional (3D) AFM image plot of CdTe thin films produced on the surface of glass substrates at different substrate temperatures. (a) 573 K, (b) 473, (c) 373, (d) 300, (e) 200, and (f) 100 K substrate temperature.

    Journal: ACS Omega

    Article Title: Fabrication and Characterization of CdTe Thin Films: Insights into Classical and Cryogenic Fabrication Techniques

    doi: 10.1021/acsomega.4c07171

    Figure Lengend Snippet: Three-dimensional (3D) AFM image plot of CdTe thin films produced on the surface of glass substrates at different substrate temperatures. (a) 573 K, (b) 473, (c) 373, (d) 300, (e) 200, and (f) 100 K substrate temperature.

    Article Snippet: Powder X-ray diffraction (PXRD) analyses for determining the crystal structure of the CdTe thin films were performed using a Panalytical Empyrean device with Cu Kα (λ = 1.5408 Å) radiation for a 2θ coupled mode in a range of 10–80° with a step size of 0.02°.

    Techniques: Produced

    Average surface roughness ( R a ) plot of CdTe thin films produced on the surface of glass substrates at different substrate temperatures.

    Journal: ACS Omega

    Article Title: Fabrication and Characterization of CdTe Thin Films: Insights into Classical and Cryogenic Fabrication Techniques

    doi: 10.1021/acsomega.4c07171

    Figure Lengend Snippet: Average surface roughness ( R a ) plot of CdTe thin films produced on the surface of glass substrates at different substrate temperatures.

    Article Snippet: Powder X-ray diffraction (PXRD) analyses for determining the crystal structure of the CdTe thin films were performed using a Panalytical Empyrean device with Cu Kα (λ = 1.5408 Å) radiation for a 2θ coupled mode in a range of 10–80° with a step size of 0.02°.

    Techniques: Produced

    Variation of (α h ν) 2 as a function of h ν for the CdTe thin films produced at different substrate temperatures.

    Journal: ACS Omega

    Article Title: Fabrication and Characterization of CdTe Thin Films: Insights into Classical and Cryogenic Fabrication Techniques

    doi: 10.1021/acsomega.4c07171

    Figure Lengend Snippet: Variation of (α h ν) 2 as a function of h ν for the CdTe thin films produced at different substrate temperatures.

    Article Snippet: Powder X-ray diffraction (PXRD) analyses for determining the crystal structure of the CdTe thin films were performed using a Panalytical Empyrean device with Cu Kα (λ = 1.5408 Å) radiation for a 2θ coupled mode in a range of 10–80° with a step size of 0.02°.

    Techniques: Produced

    Parameters Calculated from the X-ray  Diffraction  Patterns of  CdTe Films  Produced on Glass at Different Substrate Temperatures

    Journal: ACS Omega

    Article Title: Fabrication and Characterization of CdTe Thin Films: Insights into Classical and Cryogenic Fabrication Techniques

    doi: 10.1021/acsomega.4c07171

    Figure Lengend Snippet: Parameters Calculated from the X-ray Diffraction Patterns of CdTe Films Produced on Glass at Different Substrate Temperatures

    Article Snippet: Powder X-ray diffraction (PXRD) analyses for determining the crystal structure of the CdTe thin films were performed using a Panalytical Empyrean device with Cu Kα (λ = 1.5408 Å) radiation for a 2θ coupled mode in a range of 10–80° with a step size of 0.02°.

    Techniques: X-ray Diffraction, Produced

    Energy Band Gap ( E g ), Carrier Density (η), and Resistivity (ρ) Values of  CdTe Thin Films  Produced at Different Substrate Temperatures

    Journal: ACS Omega

    Article Title: Fabrication and Characterization of CdTe Thin Films: Insights into Classical and Cryogenic Fabrication Techniques

    doi: 10.1021/acsomega.4c07171

    Figure Lengend Snippet: Energy Band Gap ( E g ), Carrier Density (η), and Resistivity (ρ) Values of CdTe Thin Films Produced at Different Substrate Temperatures

    Article Snippet: Powder X-ray diffraction (PXRD) analyses for determining the crystal structure of the CdTe thin films were performed using a Panalytical Empyrean device with Cu Kα (λ = 1.5408 Å) radiation for a 2θ coupled mode in a range of 10–80° with a step size of 0.02°.

    Techniques: Produced