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In this paper, a novel hybrid structure of Pd doped ZnO/SnO2 heterojunction nanofibers with hexagonal ZnO columns was one step synthesized from electrospun precursor nanofibers.
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PL results indicate that (Ag, Pd)/ZnO has a lower recombination rate when compared with Ag or Pd doped ZnO nanoparticles.
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Meanwhile, the feasibility of using the Pd doped C3N monolayer (Pd-C3N) as a sensor and adsorbent for industrial toxic gases was discussed.
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4% of the target gas and performance factor (the ratio of response percentage to total cycle time) is evaluated highest in Pd doped PANI-SnO2 film.
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6) and ultra-high selectivity to 10 ppm dimethyl disulfide (DMDS) gas at 135 °C, which is considerably different from pure SnO2, monometallic Au or Pd doped SnO2.
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The study established that DCPD doped with iron is a suitable modification for conferring antimicrobial and osteoconductive properties on scaffolds.
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Herein, to monitor the cyanazine level, Pt and Pd doped CdO nanoparticle decorated SWCNTs composite (Pt-Pd-CdO/SWCNTs) has been synthesized as a conductive mediator and characterized by EDS, SEM and TEM techniques.
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Herein, we synthesize a well-defined 2D vdW heterostructure composed of Pd doped 1T-MoS2 and black phosphorus (BP) nanosheets via electrostatic self-assembly.
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In this paper, a novel hybrid structure of Pd doped ZnO/SnO2 heterojunction nanofibers with hexagonal ZnO columns was one step synthesized from electrospun precursor nanofibers.
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The results showed that, compared to the EVA PPD doped with spherical nano-SiO2 (with the same size), the EVA (VA = 28%)/Fe3O4 nanocomposite PPD caused Daqing crude oil to have a more compact and regular wax crystal structure and a weaker gel structure because of the synergistic effect of magnetic materials and heterogeneous nucleation.
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After being characterized by TEM, XRD, BET and XPS, it was found that Pd doped on the surface of WO3 nanosheets was mainly present as metal palladium, and the specific surface area increased after doping.
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Hall measurement confirmed that heavily Pd doped TiO2 nanoparticles is an efficient p-type material for fabrication of thin film photo-devices.
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The present investigation deals with the development, characterization and application of nanostructured Pd doped Ni electrodes (Pd@Ni), which uses the electrochemical properties of Pd in synergy with the magnetic properties of Ni for biosensors development.
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This paper describes a novel seed induced polyol synthesis of Pd doped h-NiS nanoparticles using sodium sulfide and thiourea as sulfur sources (for seeding and growing stages, respectively) at low temperatures (190 °C).
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PL results indicate that (Ag, Pd)/ZnO has a lower recombination rate when compared with Ag or Pd doped ZnO nanoparticles.
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Based on density functional theory calculations, the adsorption properties of both SOF2 and SO2F2 on intrinsic and Pd doped MoSe2 are studied by analyzing the adsorption structure, charge transfer, density of states, and molecular orbit.
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Pd doped samples exhibit a deviation of Pd concentration value from the stoichiometric ones, while parent samples have concentration values similar to the stoichiometric ones.
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The prepared pure and Pd doped TiO2 nanoparticles were used for photocatalytic and anticancer activity applications.
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The synthesized pristine WO3 (cabbage like morphology) and Pd doped WO3 (cauliflower like morphology) are examined by using XRD, XPS, Raman spectra, BET, FE-SEM, TEM.
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