Tailoring electronic structure and magnetic anisotropy in spray-pyrolyzed NiFe<sub>2</sub>O<sub>4</sub> thin films for spintronic applications. [PDF]
Patra J +9 more
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Optimized SnO<sub>2</sub> Thin Films: Correlating Solution Chemistry and Deposition Conditions with Optoelectronic Properties. [PDF]
Ramzan I +3 more
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Synergistic Effect of Calcination Temperature and Silver Doping on Photocatalytic Performance of ZnO Material. [PDF]
Kusdianto K +4 more
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Field evaluation of <i>Nepeta cataria</i>-based biopreparation delivered via an automated spraying system for sustainable control of cattle ectoparasites under pasture conditions. [PDF]
Yeszhanova G +7 more
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A {Αg Plasmonic Film}/{FeL@SiO<sub>2</sub> Catalyst} Hybrid as an Integrated Photoplasmonic Booster of H<sub>2</sub> Production by HCOOH. [PDF]
Fragou F +3 more
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Versatility of chemical spray pyrolysis technique
Materials Chemistry and Physics, 1999The chemical spray pyrolysis technique (SPT) has been, during last three decades, one of the major techniques to deposit a wide variety of materials in thin film form. The prime requisite for obtaining good quality thin film is the optimisation of preparative conditions viz. substrate temperature, spray rate, concentration of solution etc.
Pramod S Patil
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Chemical Spray Pyrolysis of Complex Thin Solid Films
ABSTRACTChemical spray pyrolysis (CSP) is a technique in which compounds of the constituents of the thin film to be fabricated are dissolved in an aqueous solution which is subsequently sprayed onto a heated substrate using nitrogen as the atomizing gas.
Clayton W. Bates +3 more
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Characteristics of CuInS2 thin films synthesizes by chemical spray pyrolysis
$$\hbox {CuInS}_{2}$$ multi-component semiconductors thin films were prepared by chemical spray pyrolysis at different deposition conditions. The structural, optical, and electrical properties of the films were investigated.
Ahmed Kotbi +3 more
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Preparation of AgInS2 chalcopyrite thin films by chemical spray pyrolysis
Materials Research Bulletin, 2003Abstract AgInS2 thin films were prepared by the spray pyrolysis technique using a water/ethanol solution containing silver acetate, indium chloride and thiourea. We reported our results on the characterization of tetragonal AgInS2 (chalcopyrite type) films, which were grown from indium deficient spraying solution.
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