Search Results - "Salih, Ammar T."

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  1. 1

    pH dependent synthesis and characterization of bismuth molybdate nanostructure for photocatalysis degradation of organic pollutants by Abid, Huda N., Al-keisy, Amar, Ahmed, Duha S., Salih, Ammar T., Khammas, Abbas

    “…Bismuth molybdate (Bi 2 MoO 6 ) nanostructures has attracted many researches as an advanced photocalysts for the organic contaminants. In this paper, bismuth…”
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    Journal Article
  2. 2

    Structural, Topography, and Optical Properties of Ba‐Doped Mn3O4 Thin Films for Ammonia Gas Sensing Application by Najim, Aus A., Darwoysh, Hassan H., Dawood, Yasmeen Z., Hazaa, Salah Q., Salih, Ammar T.

    “…The fabrication of reliable and cost‐effective gas sensor for low concentrations of toxic gases such as ammonia is still a challenging task, in this work the…”
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    Journal Article
  3. 3

    Influence of Annealing Temperature on the Structural, Morphological, Optical and Electrical Properties of Cu7S4 Thin Films Prepared by Chemical Bath Deposition by Salih, Ammar T., Najim, Aus A., Faisal, Abdulqader D.

    “…In this work Cu 7 S 4 thin films were synthesized successfully on glass substrates by a simple and cost-effective chemical bath deposition method. These films…”
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    Journal Article
  4. 4

    Synthesis of Efficient and Effective γ-MnO2/α-Bi2O3/a-Si Solar Cell by Vacuum Thermal Evaporation Technique by Najim, Aus A., Muhi, Malek A.H., Gbashi, Kadhim R., Salih, Ammar T.

    Published in Plasmonics (Norwell, Mass.) (01-06-2018)
    “…Fabrication of efficient, effective, and low-cost solar cell is still a challenging task using metal oxide semiconductors; in this work, γ -MnO 2 / α -Bi 2 O 3…”
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    Journal Article
  5. 5

    Structural, morphology and optical properties of CZO thin films deposited by sol–gel spin coating for optoelectronic applications by Gbashi, Kadhim R., Salih, Ammar T., Najim, Aus A., Muhi, Malek A. H.

    “…Different types of copper oxides doped zinc oxide thin films have been prepared onto glass and silicon substrates by spin coating process with different…”
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    Journal Article
  6. 6

    Structural, Morphological, and Optical Properties of Nanocrystalline (Bi2O3)1−x:(TiO2)x Thin Films for Transparent Electronics by Gbashi, Kadhim R., Najim, Aus A., Muhi, Malek A. H., Salih, Ammar T.

    Published in Plasmonics (Norwell, Mass.) (15-06-2019)
    “…The fabrication of low cost and eco-friendly transparent electronics using metal oxide semiconductors is still a challenging task. In this work, transparent…”
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    Journal Article
  7. 7

    Novel Covellite CuS Single-Crystal Thin Films for Optoelectronic Applications by Muhi, Malek A. H., Gbashi, Kadhim R., Salih, Ammar T., Najim, Aus A.

    Published in Plasmonics (Norwell, Mass.) (01-02-2018)
    “…Copper sulfide (CuS) thin films have been used in many applications such as solar cells, photo-thermal, electro-conductive, and microwave shielding. In this…”
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  8. 8

    Single-material multilayer ZnS as anti-reflective coating for solar cell applications by Salih, Ammar T., Najim, Aus A., Muhi, Malek A.H., Gbashi, Kadhim R.

    Published in Optics communications (01-04-2017)
    “…Multilayer Zinc Sulfide (ZnS) is a promising low cost antireflective coating for solar cell applications, in this work; thin films with novel structure…”
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  9. 9

    Structural, Topography, and Optical Properties of Ba‐Doped Mn 3 O 4 Thin Films for Ammonia Gas Sensing Application by Najim, Aus A., Darwoysh, Hassan H., Dawood, Yasmeen Z., Hazaa, Salah Q., Salih, Ammar T.

    “…The fabrication of reliable and cost‐effective gas sensor for low concentrations of toxic gases such as ammonia is still a challenging task, in this work the…”
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    Journal Article
  10. 10

    Nanostructure characteristics of Bi2O3:Al2O3 thin films and the annealing temperature effect on morphological, optical, and mechanical properties by Gbashi, Kadhim R., Salih, Ammar T., Najim, Aus A., Muhi, Malek A.H.

    Published in Superlattices and microstructures (01-10-2020)
    “…In this work, Bi2O3:Al2O3 thin films were prepared on a glass substrate by pulsed laser deposition (PLD) then thermally treated by annealing at temperatures…”
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    Journal Article