Global ETD Search

Search theses and dissertations gathered from participating repositories worldwide. Every result links back to the library that holds it. No account is needed.

Results

Showing 1 to 4 of 4 for “"Cobalt compounds."”.

  1. Characterization and Efficacy of Cobalt Compounds as in Vivo Magnetic Resonance Temperature Probes

    This work demonstrates that $\sp{59}$Co NMR can be used to determine temperature changes in vivo. The liposome encapsulated $\rm \lbrack Co(en)\sb3\rbrack Cl\sb3$ and Co(Hp) (Im) $\sb2\sp+$ show promise as in vivo MR temperature probes. The relatively high accumulation of Co(Hp) (Im) $\sb2\sp+$ in …

    uiuc Repository record for Characterization and Efficacy of Cobalt Compounds as in Vivo Magnetic Resonance Temperature Probes (opens in a new tab)

  2. In Situ Studies of Surface Electric Field on Cobalt Oxide Electrode Surfaces with Second Harmonic Generation (SHG)

    Cobalt compounds are proven to be efficient electrochemical (EC) catalysts, and the surface electric field may partly explain the efficiency. Surface electric field indicates electron/hole separation, and accumulation in the space charge layer, which can be probed in situ by electric field-induced …

    houston Repository record for In Situ Studies of Surface Electric Field on Cobalt Oxide Electrode Surfaces with Second Harmonic Generation (SHG) (opens in a new tab)

  3. Substitution chemistry of the cobalt complexes RCCo3(CO)9 (R = H, CHO) with the diphosphine ligand: 4,5-bis(diphenylphosphino)-4-cyclopenten-1,3-dione (bpcd). Syntheses, X-ray structures and reactivity.

    The reaction between the tetrahedrane cluster RCCo3(CO)9{R = CHO (1), H (3)} and the redox-active diphosphine ligand 4,5-bis(diphenylphosphino)-4-cyclopenten-1,3- dione (bpcd) leads to the replacement of two CO groups and formation of RCCo3(CO)7(bpcd) {R = CHO (2), H (4)}. Clusters 2 and 4 are …

    unt Repository record for Substitution chemistry of the cobalt complexes RCCo3(CO)9 (R = H, CHO) with the diphosphine ligand: 4,5-bis(diphenylphosphino)-4-cyclopenten-1,3-dione (bpcd). Syntheses, X-ray structures and reactivity. (opens in a new tab)