Published 2002 | Version v1
Journal article

Self-organization of magnetic nanoparticles and inclusion of hydrogen by borohydride reduction

  • 1. Central Laboratory of Electrochemical Power Sources, Bulgarian Academy of Sciences, BG-1113 Sofia (Bulgaria)
  • 2. Chemical Technology and Metallurgical University, BG-1756 Sofia (BG)

Description

Different structures of the interglobular space or voids between self-organized nanoparticles lead to differences in the measurable magnetic properties of single-domain particle chains of similar composition, grain size, and amorphous structure of the single globules. The volumes and radii of nanoparticles obtained by application of a magnetic field (3 to 15 nm) are larger than those determined without application of a magnetic field during the borohydride reduction process. Two types of hydrogen containing nanotubes with diameters of up to 2 (small-size containers) and 5 nm (large-size containers) are produced using as a driving force the domain wall formation energy between ferromagnetic nanoparticles with quantum size effected dimensions prepared by this reduction method at room temperature and ambient atmosphere. Nanoscale hydrogen containers can be used instead of MeH nanoparticle electrodes as perfect energy charge transfer media of high efficiency (close to 100 %) using Li ion electrolytes. No influence on the electrode temperature and no participation of OH- and H2O in the main charge/discharge transfer reactions were observed. (author)

Additional details

Publishing Information

Journal Title
Monatshefte fuer Chemie
Journal Volume
133
Series
Issue 6
Journal Page Range
p. 807-814
ISSN
0026-9247
CODEN
MOCHAP