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Facile synthesis of manganese carbonate quantum dots/Ni(HCO3)2-MnCO3 composites as advanced cathode materials for high energy density asymmetric supercapacitors
Xia Q.X.1; San Hui K.2; Hui K.N.1; Kim S.D.3; Lim J.H.4; Choi S.Y.3; Zhang L.J.2; Mane R.S.5; Yun J.M.6; Kim K.H.1,6
2015-09
Source PublicationJournal of Materials Chemistry A
ISSN2050-7488
Volume3Issue:44Pages:22102-22117
Abstract

We have developed a high performance supercapacitor cathode electrode composed of well dispersed MnCO3 quantum dots (QDs, ∼1.2 nm) decorated on nickel hydrogen carbonate–manganese carbonate (Ni(HCO3)2–MnCO3) hedgehog-like shell@needle (MnCO3 QDs/NiH–Mn–CO3) composites directly grown onto a 3D macro-porous nickel foam as a binder-free supercapacitor electrode by a facile and scalable hydrothermal method. The MnCO3 QDs/NiH–Mn–CO3 composite electrode exhibited a remarkable maximum specific capacitance of 2641.3 F g−1 at 3 A g−1 and 1493.3 F g−1 at 15 A g−1. Moreover, the asymmetric supercapacitor with MnCO3 QDs/NiH–Mn–CO3 composites as the positive electrode and graphene as the negative electrode showed an energy density of 58.1 W h kg−1 at a power density of 900 W kg−1 as well as excellent cycling stability with 91.3% retention after 10 000 cycles, which exceeded the energy densities of most previously reported nickel or manganese oxide/hydroxide-based asymmetric supercapacitors. The ultrahigh capacitive performance is attributed to the presence of the high surface area core–shell nanostructure, the well dispersed MnCO3 quantum dots, and the high conductivity of MnCO3 quantum dots as well as the synergetic effect between multiple transition metal ions. The superior supercapacitive performance of the MnCO3 QDs/NiH–Mn–CO3 composites makes them promising cathode materials for high energy density asymmetric supercapacitors.

DOI10.1039/c5ta04005a
URLView the original
Indexed BySCIE
Language英語English
WOS Research AreaChemistry ; Materials Science ; Energy & Fuels
WOS SubjectChemistry, Physical ; Energy & Fuels ; Materials Science, Multidisciplinary
WOS IDWOS:000364080400020
PublisherROYAL SOC CHEMISTRY, THOMAS GRAHAM HOUSE, SCIENCE PARK, MILTON RD, CAMBRIDGE CB4 0WF, CAMBS, ENGLAND
Scopus ID2-s2.0-84946417460
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Document TypeJournal article
CollectionINSTITUTE OF APPLIED PHYSICS AND MATERIALS ENGINEERING
Corresponding AuthorHui K.N.; Kim K.H.
Affiliation1.School of Materials Science and Engineering, Pusan National University, San 30 Jangjeon-dong, Geumjeong-gu, Busan 609-735, Republic of Korea
2.Department of Mechanical Convergence Engineering, Hanyang University, 17 Haengdang-dong, Seongdong-gu, Seoul 133-791, Republic of Korea
3.Advanced Characterization and Analysis Group, Korea Institute of Materials Science (KIMS), Changwon 642-831, Republic of Korea
4.Materials Processing Division, Korea Institute of Materials Science (KIMS), Changwon 642-831, Republic of Korea
5.School of Physical Sciences, Swami Ramanand Teerth Marathwada University, Nanded 431606, India
6.Global Frontier R&D Center for Hybrid Interface Materials, Pusan National University, 30 Jangjeon-dong, Geumjung-gu, Busan 609-735, South Korea
Recommended Citation
GB/T 7714
Xia Q.X.,San Hui K.,Hui K.N.,et al. Facile synthesis of manganese carbonate quantum dots/Ni(HCO3)2-MnCO3 composites as advanced cathode materials for high energy density asymmetric supercapacitors[J]. Journal of Materials Chemistry A, 2015, 3(44), 22102-22117.
APA Xia Q.X.., San Hui K.., Hui K.N.., Kim S.D.., Lim J.H.., Choi S.Y.., Zhang L.J.., Mane R.S.., Yun J.M.., & Kim K.H. (2015). Facile synthesis of manganese carbonate quantum dots/Ni(HCO3)2-MnCO3 composites as advanced cathode materials for high energy density asymmetric supercapacitors. Journal of Materials Chemistry A, 3(44), 22102-22117.
MLA Xia Q.X.,et al."Facile synthesis of manganese carbonate quantum dots/Ni(HCO3)2-MnCO3 composites as advanced cathode materials for high energy density asymmetric supercapacitors".Journal of Materials Chemistry A 3.44(2015):22102-22117.
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