Ion bombardment-induced decomposition of Li and Ba sulfates and carbonates studied by X-ray photoelectron spectroscopy
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- Type
- article
- Published
- 1985-01-01
- Cited by
- 97
- References
- 20
- OpenAlex
- https://openalex.org/W2070208320
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:98713282
Keywords
X-ray photoelectron spectroscopy, Chemistry, Decomposition, Sulfur, Ion
References
- Investigation of a possible solar‐wind darkening of the lunar surface by photoelectron spectroscopy
- Electron-spectroscopic investigations of Ba and Ba compounds
- Core and valence level photoemission studies of iron oxide surfaces and the oxidation of iron
- Surface‐layer composition changes in sputtered alloys and compounds
- SIMS study of the mechanism of cluster formation during ion bombardment of alkali halides
- An XPS study of ion-induced dissociation on metal carbonate surfaces
- An X-ray photoelectron spectroscopy study of the chemical changes in oxide and hydroxide surfaces induced by Ar+ ion bombardment
- A mechanism of surface micro-roughening by ion bombardment
- ESCA studies of metal-oxygen surfaces using argon and oxygen ion-bombardment
- X-Ray Photoelectron Spectroscopic Studies of Valence States Produced by Ion-Sputtering Reduction
- XPS studies of ion-bombardment damage of transition metal sulfides
- Low energy (≤100 eV) sputtering of thin molybdenum nitride films
- Ab initio calculations, using a small Gaussian basis set, of the electronic structure of the sulphate ion
- Localized orbital calculations of the bonding in SO 42−, SO2F2, ClO3F and SOCL2
- Sputtering of chemisorbed gas (nitrogen on tungsten) by low‐energy ions
- A model for surface layer composition changes in sputtered alloys and compounds
- On the bonding of the ions PO4 3-, SO4 2-, ClO4 -, ClO3 - and CO3 2- as studied by X-ray spectroscopy and ab initio SCF-MO calculations
- Ion-impact chemistry in the system titanium-oxygen (studies on bombardment-enhanced conductivity—III)
- Secondary ion mass spectrometry of molecular solids. Cluster formation during ion bombardment of frozen water, benzene, and cyclohexane
- スパッタの理論 I 非晶質のスパッタ収量と多結晶ターゲット
Cited by
- Composition changes in bombarded oxides and carbides: the distinction between ballistic, chemically guided, and chemically random behavior
- Electrochemical lithium intercalation at single-wall carbon nanotubes chemically attached to 4-aminothiophenol modified platinum electrodes
- Surface analyses of In–V oxide films aged electrochemically by Li insertion reactions
- Structural analysis of highly-durable SiOC composite anode prepared by electrodeposition for lithium secondary batteries
- XPS study of the displacement of an electrodeposited Cu monolayer on Pt by mercaptopyridines
- Use of XAS and chemical probes to study the structural damage induced in oxide ceramics by bombardment with low-energy ions†
- New Si–O–C composite film anode materials for LIB by electrodeposition
- Ion and X-ray induced decomposition of alkali halates. A comparative study of the radiation induced reaction paths
- Cation dependence of the chemical modifications induced by low energy particle bombardment on inorganic salts: An XPS study
- Vinylene carbonate–LiNO3: A hybrid additive in carbonic ester electrolytes for SEI modification on Li metal anode
- Preparation and properties of radio-frequency-sputtered half-Heusler films for use in solar cells
- Chemical factors governing the modification of layered phosphates by low-energy ion bombardment
- Amorphization and chemical modification of β-BaB2O4 surface by polishing
- Ion bombardment induced decomposition of polyimide (PIQ) studied by X-ray Photoelectron Spectroscopy (XPS) and Direct Recoil (DR) spectrometry
- Mass spectrometry of secondary neutrals and ions for chemical analysis of salts
- Modeling of degradation effects considering side reactions for a pouch type Li-ion polymer battery with carbon anode
- Reaction of nonaqueous halogen solutions with YBa2Cu3O7−x
- Chemical effects induced in alkali Phosphates by 2 keV Ar ion bombardment
- Corrosion Behaviors of Li-B-H Films in Air
- Formation of interfacial layer and long-term cyclability of Li-O₂ batteries.
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