[1] | ZHAO Xue,QIU Pingda,JIANG Haijing,et al.The Latest Research Progress of Supercapacitor Electrode Materials[J]. Electron Compon Mater,2015,34(1):32-34(in Chinese). 赵雪,邱平达,江海静,等. 超级电容器电极材料研究最新进展[J]. 电子元件与材料,2015,34(1):32-34. | [2] | Zhou M L,Chai H,Jia D Z,et al.The Glucose-assisted Synthesis of a Graphene Nanosheet-NiO Composite for High-performance Supercapacitors[J]. New J Chem,2014,38(6):2320-2326. | [3] | Zhang Y B,Guo Z G. Green Synthesis of Open Porous NiO Films with an Excellent Capacitance Performance[J]. Chem Comm,2014,50(26):3443-3446. | [4] | Li M L,Sun G Y,Yin P P,et al.Controlling the Formation of Rodlike V2O5 Nanocrystals on Reduced Graphene Oxide for High-Performance Supercapacitors[J]. ACS Appl Mater Interfaces,2013,5(21):1462-11470. | [5] | Kim S I,Thiyagarajan P,Jang J H. Great Improvement in Pseudocapacitor Properties of Nickel Hydroxide via Simple Gold Deposition[J]. Nanoscale,2014,6(20):11646-11652. | [6] | Dam D T,Wang X,Lee J M. Graphene/NiO Nanowires:Controllable One-Pot Synthesis and Enhanced Pseudocapacitive Behavior[J]. ACS Appl Mater Interfaces,2014,6(11):8246-8256. | [7] | HU Zhifeng,YANG Fei. Preparation and Investigation on Supercapacitor Properties of Three Dimensional Nano Nickel Oxide Electrode[J]. Chinese New Chem Mater,2014,42(11):85-93(in Chinese). 胡志锋,杨飞. 氧化镍三维纳米电极的制备及其超级电容性能研究[J]. 化工新型材料,2014,42(11):85-93. | [8] | XIE Xiaoying,ZHANG Chen,YANG Quanhong. Research Progress of Electrode Materials for Supercapacitor[J]. Chinese Chem Ind Eng,2014,31(11):63-71(in Chinese). 谢小英,张辰,杨全红. 超级电容器电极材料研究进展[J]. 化学工业与工程,2014,31(11):63-71. | [9] | Chen S,Duan J J,Jaroniec M,et al.Hierarchically Porous Graphene-based Hybrid Electrodes with Excellent Electrochemical Performance[J]. J Mater Chem A,2013,1(33):9409-9413. | [10] | Yang Z H,Xu F F,Zhang W X,et al.Controllable Preparation of Multishelled NiO Hollow Nanospheres via Layer-by-layer Self-assembly for Supercapacitor Application[J]. J Power Sources,2014,246:24-31. | [11] | Kim S I,Lee J S,Ahn H J,et al.Facile Route to an Efficient NiO Supercapacitor with a Three-Dimensional Nanonetwork Morphology[J]. ACS Appl Mater Interfaces,2013,5(5):1596-1603. | [12] | Xiong S L,Yuan C Z,Zhang X G,et al.Mesoporous NiO with Various Hierarchical Nanostructures by Quasi-nanotubes/nanowires/nanorods Self-assembly:Controllable Preparation and Application in Supercapacitors[J]. Cryst Eng Comm,2011,13(2):626-632. | [13] | Xiao J W,Yang S H. Bio-inspired Synthesis of NaCl-type CoxNi1-xO(0≤x<1) Nanorods on Reduced Graphene Oxide Sheets and Screening for Asymmetric Electrochemical Capacitors[J]. Mater Chem,2012,22(4):12253. | [14] | Bag S,Raj C R. Layered Inorganic-organic Hybrid Material Based on Reduced Graphene Oxide and α-Ni(OH)2 for High Performance Supercapacitor Electrodes[J]. J Mater Chem A,2014,2(42):17848-17856. | [15] | Wan H Z,Jiang J J,Yu J W,et al.Cobalt Sulfide Nanotube Arrays Grown on FTO and Graphene Membranes for High-performance Supercapacitor Application[J]. App Surf Sci,2014,311:793-798. | [16] | Chen H,Hu L F,Chen M,et al.Nickel-Cobalt Layered Double Hydroxide Nanosheets for High-performance Supercapacitor Electrode Materials[J]. Adv Funct Mater,2014,24(7):934-942. | [17] | Kiani M A,Mousavi M F,Ghasemi S. Size Effect Investigation on Battery Performance:Commparison Between Micro- and Nano-particles of β-Ni(OH)2 as Nickel Battery Cathode Material[J]. J Power Sources,2010,195(17):5794-5800. | [18] | CHEN Ye,SHU Chang,ZHANG Chunxia,et al.Preparation and Supercapacitor Properties of Nickel Oxide[J]. Chinese J Appl Chem,2007,24(8):873-877(in Chinese). 陈野,舒畅,张春霞,等. 氧化镍的合成及其超级电容性能[J]. 应用化学,2007,24(8):873-877. |
|