| Literature DB >> 24875253 |
Ji-Sen Li1, Shun-Li Li2, Yu-Jia Tang2, Kui Li2, Lei Zhou2, Ning Kong2, Ya-Qian Lan2, Jian-Chun Bao2, Zhi-Hui Dai2.
Abstract
The class="Chemical">nitrogen (N),Entities:
Year: 2014 PMID: 24875253 PMCID: PMC4038808 DOI: 10.1038/srep05130
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Schematic illustration of the synthesis of MOF-templated NPS-C-MOF-5 as a metal-free electrocatalyst for the ORR.
Figure 2(a) TEM, (b) EDS and (c) STEM images of NPS-C-MOF-5, (d–h) the corresponding C-, O-, N-, P- and S- elemental mappings, respectively.
Figure 3(a) XPS survey spectrum and high resolution XPS spectra of (b) N 1s, (c) P 2p and (d) S 2p of NPS-C-MOF-5, respectively.
Figure 4(a) N2 adsorption-desorption isotherms, (b) microporous size distributions by DFT model and (c) mesoporous size distributions of different samples by BJH model.
Figure 5Electrocatalytic performances of different samples.
(a) CVs of NPS-C-MOF-5 in N2- or O2-saturated 0.1 M KOH solution; (b) LSVs of NPS-C-MOF-5 at various rotation rates; (c) LSVs of different samples at a rotation rate of 1600 rpm; (d) K-L plots of different samples at −0.6 V; (e) Electron-transfer numbers of different samples from −0.4 to −0.9 V; (f) Kinetic limiting current densities of different samples and the corresponding electron-transfer numbers at −0.6 V.
Figure 6(a) CVs for the ORR at the NPS-C-MOF-5 electrode in an O2-saturated 0.1 M KOH solution or an O2-saturated 0.1 M KOH solution upon addition of methanol; (b) Current-time (i-t) chronoamperometric response of NPS-C-MOF-5 and commercial Pt-C electrodes at −0.4 V in O2-saturated 0.1 M KOH at a rotation rate of 1600 rpm.
Figure 7(a–c) Structures, (d–i) Optical micrographs before and after carbonization, (j) CVs and (k) LSVs of different samples in O2 saturated 0.1 M KOH solution.