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Plasma-enhanced atomic layer deposition of vanadium phosphate as a lithium-ion battery electrode material

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Keywords
OXIDE THIN-FILMS, ALUMINUM PHOSPHATE, ELECTROCHEMICAL-BEHAVIOR, SOLID-ELECTROLYTE, ANODE MATERIALS, CATHODE

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Chicago
Dobbelaere, Thomas, Felix Mattelaer, Philippe M Vereecken, and Christophe Detavernier. 2017. “Plasma-enhanced Atomic Layer Deposition of Vanadium Phosphate as a Lithium-ion Battery Electrode Material.” Journal of Vacuum Science & Technology A 35 (4).
APA
Dobbelaere, T., Mattelaer, F., Vereecken, P. M., & Detavernier, C. (2017). Plasma-enhanced atomic layer deposition of vanadium phosphate as a lithium-ion battery electrode material. JOURNAL OF VACUUM SCIENCE & TECHNOLOGY A, 35(4). Presented at the Pacific Rim symposium on Surfaces, Coatings and Interfaces (PACSURF 2016).
Vancouver
1.
Dobbelaere T, Mattelaer F, Vereecken PM, Detavernier C. Plasma-enhanced atomic layer deposition of vanadium phosphate as a lithium-ion battery electrode material. JOURNAL OF VACUUM SCIENCE & TECHNOLOGY A. 2017;35(4).
MLA
Dobbelaere, Thomas, Felix Mattelaer, Philippe M Vereecken, et al. “Plasma-enhanced Atomic Layer Deposition of Vanadium Phosphate as a Lithium-ion Battery Electrode Material.” JOURNAL OF VACUUM SCIENCE & TECHNOLOGY A 35.4 (2017): n. pag. Print.
@article{8525334,
  articleno    = {041513},
  author       = {Dobbelaere, Thomas and Mattelaer, Felix and Vereecken, Philippe M and Detavernier, Christophe},
  issn         = {0734-2101},
  journal      = {JOURNAL OF VACUUM SCIENCE \& TECHNOLOGY A},
  language     = {eng},
  location     = {Kohala Coast, HI, USA},
  number       = {4},
  pages        = {10},
  title        = {Plasma-enhanced atomic layer deposition of vanadium phosphate as a lithium-ion battery electrode material},
  url          = {http://dx.doi.org/10.1116/1.4987131},
  volume       = {35},
  year         = {2017},
}

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