1. |
- LAMPE-ÖNNERUD, C, et al.
(author)
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CHEMICAL INTERCALATION OF LITHIUM INTO A V6O13 HOST
- 1995
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In: SOLID STATE IONICS. - 0167-2738. ; 81:3-4, s. 189-199
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Journal article (peer-reviewed)abstract
- Chemical lithium insertion into five different types of V6O13-based intercalation hosts have been performed in this study. Four phases were identified: Li-0.56,O-13, Li1.5V6O13, Li1.5V6O13 and Li6V6O13; the latter phase representing the highest degree of
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2. |
- LAMPE ÖNNERUD, C, et al.
(author)
-
MECHANISMS FOR THE THERMAL-DECOMPOSITION OF NH4VO3 INTO V6O13, V3O7 AND V2O5
- 1995
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In: Royal Soc. Chemistry. ; 5:7, s. 1075-1080
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Journal article (peer-reviewed)abstract
- The thermal decomposition of ammonium metavanadate, NH4VO3, has been studied by differential scanning calorimetry (DSC), mass spectrometry (MS) and X-ray diffraction (XRD) in the temperature range 50-500 degrees C. Different experimental conditions (heat
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3. |
- LAMPE ÖNNERUD, C, et al.
(author)
-
THE PERFORMANCE OF SINGLE-PHASE V6O13 IN THE LITHIUM POLYMER ELECTROLYTE BATTERY
- 1995
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In: JOURNAL OF THE ELECTROCHEMICAL SOCIETY. ; 142:11, s. 3648-3651
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Journal article (peer-reviewed)abstract
- Three different V6O13-based cathodes have been incorporated into thin-film polymer electrolyte cells: single-phase V6O13, and V6O13 containing 10 molar percent (m/o) VO2 or V2O5. In situ x-ray diffraction (XRD) reveals four phases, identified as Li0.5V6O
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4. |
- LAMPE ÖNNERUD, C, et al.
(author)
-
THE SYNTHESIS OF SINGLE-PHASE V6O13 AND VO2
- 1995
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In: EUROPEAN JOURNAL OF SOLID STATE AND INORGANIC CHEMISTRY. ; 32:4, s. 293-302
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Journal article (other academic/artistic)abstract
- The synthesis of single-phase V6O13 and VO2 is described. The method involves thermal decomposition of NH4VO3 at 0.5 degrees C/min from 50 to 500 degrees C in a specially designed reaction chamber. The synthesis of V6O13 requires a controlled maximum pre
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