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Beilstein J. Nanotechnol. 2014, 5, 346–354, doi:10.3762/bjnano.5.39
Figure 1: SEM images of the ECNFs (a) and the suface of laccase–Nafion–ECNFs/GCE (b). Insert: the diameter di...
Figure 2: Raman spectrum (a) and FTIR spectrum (b) of the ECNFs.
Figure 3: FTIR spectra of laccase (a), laccase–Nafion (b), and laccase–Nafion–ECNFs (c) thin films, respectiv...
Figure 4: Cyclic voltammograms of the laccase–Nafion–ECNFs/GCE in acetate buffer (pH 4.0) with different scan...
Figure 5: Cyclic voltammograms of of laccase–Nafion/GCE (a), laccase/GCE (b), laccase–Nafion–ECNFs/GCE (c) to...
Figure 6: Schematic representation of laccase-catalyzed oxidation of catechol with its subsequent electrochem...
Figure 7: Influences of solution pH (at 0.4 V) (a) and applied potential (pH 5.5) (b) on the steady-state cur...
Figure 8: Typical steady-state current response of the laccase–Nafion–ECNFs/GCE on the successive addition of...
Figure 9: Relative responses of the laccase–Nafion–ECNFs/GCE for different phenolic compounds (catechol, cate...
Figure 10: Storage stability of the laccase–Nafion–ECNFs/GCE in 0.2 M acetate buffer (pH 4.0) at 4 °C.
Beilstein J. Nanotechnol. 2012, 3, 513–523, doi:10.3762/bjnano.3.59
Figure 1: Powder XRD patterns of the Mn2O3/graphene hybrids prepared by an electrochemical method with variou...
Figure 2: (a) SEM, (b) TEM, (c) HRTEM images, and (d) SAED of Mn2O3/graphene prepared with 0.15 M MnSO4.
Figure 3: (a, c) SEM and (b, d) TEM images of Mn2O3/graphene prepared with (a, b) IMO:G = 1.34, (c, d) IMO:G ...
Figure 4: Powder XRD patterns for lithiated Mn2O3/graphene with (a) IMO:G = 0.82, (b) IMO:G = 1.34, (c) IMO:G...
Figure 5: (a) SEM, (b) TEM, (c) SAED and (d) HRTEM images of LiMn2O4/graphene hybrids prepared from Mn2O3/gra...
Figure 6: (a) The second-cycle voltage profiles of LiMn2O4/graphene (ILMO:G = 1.22) between 3 and 4.5 V at 1....
Figure 7: The Nyquist plots of LiMn2O4/graphene and pure LiMn2O4 electrodes at the fifth fully discharged sta...
Figure 8: (a) The second-cycle discharge voltage profiles of LiMn2O4/graphene (ILMO:G = 1.22) between 2 and 4...
Figure 9: The second-cycle discharge capacities of LiMn2O4/graphene with various ILMO:G and commercial LiMn2O4...