X-ray Spectroscopic Study of Cu2S, CuS, and Copper Films Exposed to Na2S Solutions
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- Type
- article
- Published
- 2012-10-11
- Cited by
- 39
- References
- 30
- OpenAlex
- https://openalex.org/W1970682995
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:94175096
Keywords
Copper, Spectroscopy, Analytical Chemistry (journal), Absorption spectroscopy, X-ray absorption spectroscopy
References
- Full-Potential Electronic Structure Method
- Electronic structure of complex copper systems probed by resonant inelastic X-ray scattering at Cu L3 edge
- Nuclear waste problem solved, claims Sweden's nuclear industry
- Non-Abelian geometric phases in ground-state Josephson devices
- High resolution 1s core hole X-ray spectroscopy in 3d transition metal complexes—electronic and structural information
- MODELING OF PRIMARY CHEMICAL PROCESSES OF WATER RADIOLYSIS AND SIMULATION BY SPUR DIFFUSION MODEL
- XLI. Precision measurements of crystal parameters
- The valence of copper in sulphides and selenides: An X-ray photoelectron spectroscopy study
- Copper(II) sulfide
- A comparative X-ray absorption near-edge structure study of bornite, Cu5FeS4, and chalcopyrite, CuFeS2
- Why molecules move along a temperature gradient
- Surface oxidation of chalcopyrite (CuFeS2) under ambient atmospheric and aqueous (pH 2-10) conditions: Cu, Fe L- and O K-edge X-ray spectroscopy
- Experimental and theoretical investigation of the electronic structure of transition metal sulphides: CuS, and
- Design of a portable large spectral range grazing incidence instrument
- Elimination of the inner-shell lifetime broadening in x-ray-absorption spectroscopy.
- Electrochemical potentiometric determination of the diffusion coefficient of copper in low digenite, a copper sulfide
- The ESRF beamline ID26: X-ray absorption on ultra dilute sample.
- Studies of copper valence states with Cu L3 x-ray-absorption spectroscopy.
- X-ray photoelectron spectroscopic study of copper minerals
- Soft x-ray emission spectroscopy using monochromatized synchrotron radiation (invited)
Cited by
- Molecular Soft X-Ray Emission Spectroscopy
- Resonant inelastic soft X-ray scattering applied to molecular materials
- Preparation and characterization of colloidal copper xanthate nanoparticles
- Influence of Solvent Reducing Ability on Copper Sulfide Crystal Phase
- Tuning Cu dopant of Zn0.5Cd0.5S nanocrystals enables high-performance photocatalytic H2 evolution from water splitting under visible-light irradiation
- Enhanced visible-light photocatalytic hydrogen production activity of three-dimensional mesoporous p-CuS/n-CdS nanocrystal assemblies
- Application of CuS-ZnS PN junction for photoelectrochemical water splitting
- High-index faceted CuFeS2 nanosheets with enhanced behavior for boosting hydrogen evolution reaction.
- Multimodal characterization of solution-processed Cu3SbS4 absorbers for thin film solar cells
- Effect of Ag Doping on Electronic Structure of Cluster Compounds AgxMo9Se11 (x = 3.4, 3.9)
- A Cu2+-doped two-dimensional material-based heterojunction photoelectrode: application for highly sensitive photoelectrochemical detection of hydrogen sulfide
- Direct measurements of copper speciation in basaltic glasses: understanding the relative roles of sulfur and oxygen in copper complexation in melts
- Simultaneous capping and substitution of nitrogen ions of Cu3N nanocrystals with sulfur ions using DDT as a co-surfactant to form chalcocite and digenite nanocrystals
- One-step synthesis of Cu3N, Cu2S and Cu9S5 and photocatalytic degradation of methyl orange and methylene blue
- Reversible photochromism for the enhancement of carrier separation in Zn1-Cu S
- Ultrasensitive photoelectrochemical sensor enabled by a target-induced signal quencher release strategy
- Formation, evolution and characteristics of copper sulfide nanoparticles in the reactions of aqueous cupric and sulfide ions
- Intrinsic lamellar defects containing atomic Cu in Cu2X (X = S, Se) thermoelectric materials
- Copper sulfides based photocatalysts for degradation of environmental pollution hazards: A review on the recent catalyst design concepts and future perspectives
- A Magnesium/Lithium Hybrid-Ion Battery with Modified All-Phenyl-Complex-Based Electrolyte Displaying Ultralong Cycle Life and Ultrahigh Energy Density.
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