Works matching IS 09574522 AND DT 2022 AND VI 33 AND IP 2
Results: 45
Preparation and characterization of CuCrO<sub>2</sub>–CeO<sub>2</sub> nanofibers by electrospinning method.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 1091, doi. 10.1007/s10854-021-07381-5
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Physical and structural properties of gamma irradiated ytterbium phosphate glasses as a nominated lasing material.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 1078, doi. 10.1007/s10854-021-07380-6
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Effect of CeO<sub>2</sub> nanoparticles on dielectric properties of PVB/CeO<sub>2</sub> polymer nanodielectrics: a positron lifetime study.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 1063, doi. 10.1007/s10854-021-07379-z
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Lowered sintering temperature and improved microwave dielectric properties in a vanadium tantalate via in-situ adjusting V<sup>5+</sup>/Ta<sup>5+</sup> molar ratio.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 1054, doi. 10.1007/s10854-021-07377-1
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Fe<sub>3</sub>O<sub>4</sub> nanoparticle decorated novel magnetic metal oxide microcomposites for the catalytic degradation of 4-nitrophenol for wastewater cleaning applications.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 1039, doi. 10.1007/s10854-021-07376-2
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The effect of Cu doping on optical and surface properties of ZnO thin films fabricated by thermionic vacuum arc (TVA) deposition.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 1030, doi. 10.1007/s10854-021-07374-4
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Fundamentals, antibacterial, and photocatalysis properties of Ag@Se@PVDF nanocomposite membrane synthesized via laser ablation technique.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 1021, doi. 10.1007/s10854-021-07372-6
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Thermally conductive composite phase change materials with excellent thermal management capability for electronic devices.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 1008, doi. 10.1007/s10854-021-07371-7
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Effect of TiO<sub>2</sub> on the sintering temperature and dielectric properties of Li<sub>2</sub>O–MgO–ZnO–B<sub>2</sub>O<sub>3</sub>–SiO<sub>2</sub> ceramic composites for LTCC applications.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 1000, doi. 10.1007/s10854-021-07370-8
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Investigations on BaMn<sub>x</sub>Ti<sub>1-x</sub>O<sub>3</sub> ferroelectric film based MFS structure for non-volatile memory application.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 985, doi. 10.1007/s10854-021-07369-1
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Characterization of RF magnetron-sputtered a-BO<sub>x</sub>N<sub>y</sub>/ZnO MIS structures for transparent electronics.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 974, doi. 10.1007/s10854-021-07368-2
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Influence of Sr and Mn co-doping on the structural, optical, dielectric, multiferroic properties and band gap tuning in bismuth ferrite ceramics.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 959, doi. 10.1007/s10854-021-07367-3
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An investigation over the effect of the reducing agent on the properties of the ZnO-reinforced Ni–P coatings.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 950, doi. 10.1007/s10854-021-07366-4
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Microwave shielding performance of TiO<sub>2</sub>/Co/GF containing high structure carbon fiber alternate laminate composite.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 934, doi. 10.1007/s10854-021-07365-5
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A review on one-dimensional carbon-based composites as electromagnetic wave absorbers.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 567, doi. 10.1007/s10854-021-07363-7
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Self-driven solar-blind ultraviolet photodetectors based on p-Zn<sub>1−x</sub>Sb<sub>x</sub>O/n-Si<sup>−</sup> (x = 0.03, 0.05) heterojunction diodes.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 920, doi. 10.1007/s10854-021-07362-8
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Effect of co-dopant proportion on the structural, optical and magnetic properties of pristine NiO nanoparticles synthesized by Sol–gel method.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 907, doi. 10.1007/s10854-021-07361-9
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Effect of different nanostructures of Cu<sub>2</sub>ZnSnS<sub>4</sub> on visible light-driven photocatalytic degradation of organic pollutants.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 894, doi. 10.1007/s10854-021-07359-3
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Magnetic properties and electrocatalytic properties of Fe<sub>5</sub>C<sub>2</sub> particles with different morphologies.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 884, doi. 10.1007/s10854-021-07358-4
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Bismuth sulfide bridged Bi<sub>2</sub>S<sub>3</sub>/sulfuretted ZnAl-LDHs heterojunctions for synergetic enhancement of photodegradation activity towards tetracycline degradation.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 871, doi. 10.1007/s10854-021-07357-5
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Effect of Mg<sup>2+</sup> ions substitution on phase formation, structural, morphological, and optical properties of Zn<sub>0.1−x</sub>Mg<sub>x</sub>O structure.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 861, doi. 10.1007/s10854-021-07356-6
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Preparation and magnetic performance optimization of FeSiAl/Al<sub>2</sub>O<sub>3</sub>–MnO–Al<sub>2</sub>O<sub>3</sub> soft magnetic composites with particle size adjustment.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 850, doi. 10.1007/s10854-021-07355-7
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Structure and electromagnetic properties of LBBS glass added M-type Sr ferrites for LTCC technology.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 841, doi. 10.1007/s10854-021-07354-8
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Structural, electrical and magnetic properties of perovskite La<sub>0.4</sub>Sr<sub>0.6</sub>MnO<sub>3</sub> prepared by mechanochemical synthesis technique.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 828, doi. 10.1007/s10854-021-07353-9
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Anti-oxidative copper nanoparticle paste for Cu–Cu bonding at low temperature in air.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 817, doi. 10.1007/s10854-021-07352-w
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Effect of KNN doping on the dielectric properties of BaTiO<sub>3</sub> lead-free ceramics.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 810, doi. 10.1007/s10854-021-07351-x
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Characterization of physicochemical properties of As<sub>2</sub>Se<sub>3</sub>–GeTe–AgI chalcohalide glasses for solar cell and IR applications: influence of adding AgI.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 800, doi. 10.1007/s10854-021-07350-y
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Fractures of ultra-low-k material in a chip during a flip-chip process.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 789, doi. 10.1007/s10854-021-07349-5
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Effect of magnetic properties in FeSi soft magnetic composites by low melting glass powder as adhesive and insulating agent.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 782, doi. 10.1007/s10854-021-07348-6
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Optical, crystallographic and Judd–Ofelt analysis of europium doped Sr<sub>6</sub>Y<sub>2</sub>Al<sub>4</sub>O<sub>15</sub> nanocrystals for NUV-WLED fabrication.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 767, doi. 10.1007/s10854-021-07347-7
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Influence of Si substitution on magnetic properties, random anisotropy, and magnetocaloric effect of nanocrystalline Sm<sub>2</sub>Fe<sub>17−x</sub>Si<sub>x</sub>.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 759, doi. 10.1007/s10854-021-07345-9
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Interstratification-assembled 2D montmorillonite and layered double metal hydroxide heterostructure as all-solid-state polyelectrolyte for wide temperature and long-cycling stability supercapacitors.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 739, doi. 10.1007/s10854-021-07344-w
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Tuning photocatalytic activity and magnetic behavior of Bi<sub>0.8</sub>Re<sub>0.2</sub>FeO<sub>3</sub>(Re = Nd, Sm) multiferroics.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 725, doi. 10.1007/s10854-021-07343-x
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Enhanced photocurrent in PbSe nanorod-quantum dot bulk nano-heterojunction solar cells.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 714, doi. 10.1007/s10854-021-07342-y
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Effect of different polyvinylpyrrolidone and 3-mercaptopropionic acid concentrations on structural, morphological, and optical properties of cadmium sulfide quantum dots.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 703, doi. 10.1007/s10854-021-07341-z
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Enhanced visible-light absorption and room-temperature ferromagnetism of [KNbO<sub>3</sub>]<sub>1-x</sub>[BaFe<sub>1/2</sub>Nb<sub>1/2</sub>O<sub>3-δ</sub>]<sub>x</sub> solid solutions.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 690, doi. 10.1007/s10854-021-07337-9
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Antiferroelectric NaNbO<sub>3</sub> ceramics prepared by hydrothermal-assisted cold sintering process.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 683, doi. 10.1007/s10854-021-07336-w
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Enhanced electrical properties of ternary CNTs/PANI wrapped by sulfonated graphene nanocomposite for supercapacitor electrodes.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 675, doi. 10.1007/s10854-021-07335-x
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Activated carbons derived from sugarcane bagasse for high-capacitance electrical double layer capacitors.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 663, doi. 10.1007/s10854-021-07334-y
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A transparent photovoltaic device of NiO/MgO quantum dots/TiO<sub>2</sub> arrays pn junction with carrier injection of MgO QDs.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 652, doi. 10.1007/s10854-021-07333-z
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Low sintering effect on structural, electrical and magnetic properties of rare-earth metal ion Er<sup>3+</sup>-substituted nickel–zinc spinal ferrites.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 635, doi. 10.1007/s10854-021-07332-0
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Enhanced photocatalytic, electrochemical and antimicrobial activities of α-Mn<sub>2</sub>V<sub>2</sub>O<sub>7</sub> nanopebbles.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 617, doi. 10.1007/s10854-021-07331-1
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The improved magnetic properties of FeSi powders cores composed with different size particles.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 607, doi. 10.1007/s10854-021-07330-2
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Effect of homogeneous coating on K<sup>+</sup>-doped NaGdF<sub>4</sub>:Er<sup>3+</sup>,Yb<sup>3+</sup> upconversion materials.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 596, doi. 10.1007/s10854-021-07328-w
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Co-electrodeposition of Cu<sub>3</sub>BiS<sub>3</sub> thin films in weakly alkaline aqueous solutions for photovoltaic application.
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- Journal of Materials Science: Materials in Electronics, 2022, v. 33, n. 2, p. 585, doi. 10.1007/s10854-021-07327-x
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