Search Results - "ARDELEAN, I"

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    FT-IR, Raman and thermoluminescence investigation of P₂O₅–BaO–Li₂O glass system by Ivascu, C, Timar Gabor, A, Cozar, O, Daraban, L, Ardelean, I

    Published in Journal of molecular structure (01-05-2011)
    “…The 0.5P₂O₅·xBaO·(0.5−x) Li₂O glass system (0⩽x⩽0.5mol%) is investigated by FT-IR, Raman and thermoluminescence as a possible dosimetic material. FT-IR and…”
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    Harnessing Oxygenic Photosynthetic Microorganisms for Sustainable Wastewater Treatment Systems: A Comprehensive Review by Zamfirescu, Ana Valentina, Stancu, Mihaela Marilena, Ardelean, Ioan I., Moisescu, Cristina

    Published in Water (Basel) (01-11-2024)
    “…Aquaculture systems globally face significant environmental challenges, particularly concerning wastewater management. This review explores the innovative…”
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    EPR study of molybdenum-lead-phosphate glasses by Cozar, O., Magdas, D.A., Ardelean, I.

    Published in Journal of non-crystalline solids (01-02-2008)
    “…The local symmetry and interaction between paramagnetic ions in xMoO 3(1 − x)[2 P 2O 5PbO] glasses with 0.5 ⩽ x ⩽ 50 mol% are investigated by EPR spectroscopy…”
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    The structural dual role of Fe2O3 in some lead-phosphate glasses by Magdas, D.A., Cozar, O., Chis, V., Ardelean, I., Vedeanu, N.

    Published in Vibrational spectroscopy (20-11-2008)
    “…The FT-IR study of iron concentration effect on the xFe2O3*(1 - x)[2P2O5PbO] glass system with 0 < = x < = 50 mol% has revealed the dual role of Fe2O3 both as…”
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    IR and ESR investigations on V2O5–P2O5–BaO glass system with opto-electronic potential by Vedeanu, N., Stanescu, R., Filip, S., Ardelean, I., Cozar, O.

    Published in Journal of non-crystalline solids (15-08-2012)
    “…The changes observed in the IR and ESR spectra of the xV2O5(1−x)[0.8P2O5∙0.2BaO] glass system with 0≤x≤50mol% show that vanadium oxide acts as a network…”
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    FT-IR and raman spectroscopic studies on B2O3-PbO-Ag2O glasses dopped with manganese ions by CICEO LUCACEL, Raluca, MARCUS, Carmen, TIMAR, V, ARDELEAN, I

    Published in Solid state sciences (01-09-2007)
    “…Glasses from xMnO*(100-x)[3B2O3*0.5PbO*0.5Ag2O] (0 < =x < =20mol%) system were prepared and studied by means of two spectroscopic techniques: FT-IR absorption…”
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    Structural investigation of new vanadium–bismuth–phosphate glasses by IR and ESR spectroscopy by Vedeanu, N., Cozar, O., Stanescu, R., Cozar, I.B., Ardelean, I.

    Published in Journal of molecular structure (24-07-2013)
    “…IR spectra changes of the xV2O5(1−x)[0.8P2O5⋅0.2Bi2O3] glass system with 0⩽x⩽50mol% show that vanadium oxide acts as a network modifier at low concentration…”
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    Structural investigations of V2O5–P2O5–CaO glass system by FT-IR and EPR spectroscopies by Stefan, R., Simedru, D., Popa, A., Ardelean, I.

    Published in Journal of materials science (01-04-2012)
    “…x V 2 O 5 ·(100 −  x )[0.7P 2 O 5 ·0.3CaO] glass system was obtained for 0 ≤  x  ≤ 35 mol% V 2 O 5 . In order to obtain information regarding their structure,…”
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    Structural characterization of phosphate glasses doped with silver by Ciceo Lucacel, R., Hulpus, A.O., Simon, V., Ardelean, I.

    Published in Journal of non-crystalline solids (15-03-2009)
    “…The present paper reports the influence of silver oxide addition on the local structure of 2P 2O 5 · CaO · 0.05ZnO glass matrix. The glass samples were…”
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    The modifier/former role of MoO3 in some calcium-phosphate glasses by Toloman, D., Ciceo-Lucacel, R., Magdas, D.A., Regos, A., Biris, A.R., Leostean, C., Ardelean, I.

    Published in Journal of alloys and compounds (15-04-2013)
    “…► A new calcium-phosphate glass system with high molybdenum content was prepared. ► The EPR spectra for different MoO3 concentrations were recorded and…”
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    Infrared and Raman spectroscopic investigations of xMnO (100− x)[As 2O 3 TeO 2] glass system by Ardelean, I., Lupsor, Simona, Rusu, Dorina

    Published in Physica. B, Condensed matter (01-05-2010)
    “…xMnO·(100− x)[As 2O 3·TeO 2] glass system, with 0≤ x≤50 mol %, was prepared and investigated by FT-IR and Raman spectroscopies in order to determine its…”
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    Raman spectroscopic study of CuO–V2O5–P2O5–CaO glass system by Vedeanu, N., Cozar, O., Ardelean, I., Lendl, B., Magdas, D.A.

    Published in Vibrational spectroscopy (20-11-2008)
    “…In order to evidence the structural changes induced by CuO and V2O5 in the phosphate glass network and their modifier or former role, x(CuO*V2O5)(100 -…”
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    Development of food safety risk assessment tools based on molecular typing and WGS of Campylobacter jejuni genome by Ardelean, AI, Calistri, P, Giovannini, A, Garofolo, G, Di Pasquale, A, Conte, A, MorelliD, D

    Published in EFSA journal (01-09-2019)
    “…The ‘learning‐by‐doing’ EU‐FORA fellowship programme in the development of risk assessment tools based on molecular typing and WGS of Campylobacter jejuni…”
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    Preparation, structure and bioactivity of xAu₂O₃·(100−x)[P₂O₅·CaO] glass system by Regos, Adriana N, Ardelean, I

    Published in Journal of molecular structure (01-12-2011)
    “…Gold doped calcium phosphate glasses were prepared by the melting method. The structure of Au₂O₃–P₂O₅–CaO glasses is investigated using X-ray diffraction,…”
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    Raman spectroscopic study of some lead phosphate glasses with tungsten ions by Cozar, O., Magdas, D.A., Nasdala, L., Ardelean, I., Damian, G.

    Published in Journal of non-crystalline solids (15-08-2006)
    “…The structure of xWO3·(100−x)[2P2O5·PbO] glass system with 0⩽x⩽50mol% was investigated by Raman spectroscopy. The characteristic bands of these glasses due to…”
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    Raman study of xMeO·(100 − x)[P 2O 5·Li 2O] (MeO ⇒ Fe 2O 3 or V 2O 5) glass systems by Ardelean, I., Rusu, Dorina, Andronache, C., Ciobotă, V.

    Published in Materials letters (2007)
    “…Glasses from xMeO·(100 − x)[P 2O 5·Li 2O] (MeO ⇒ Fe 2O 3 or V 2O 5) systems, with 0 ≤ x ≤ 50 mol%, were prepared and investigated by Raman spectroscopy. The…”
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    Structural investigations of some Bi2O3 based glasses by Ardelean, I, Rusu, D

    “…A comparative structural study was made on the glass systems xFe2O3*(100-x)Bi2O3 and xFe2O3*(100-x)[Bi2O3*MO] (where MO = > CdO, As2O3 and GeO2), with 0 < or =…”
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