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Original Articles

Facile synthesis and magnetic properties of manganese dioxide nanowires

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Pages 120-125 | Received 12 Jul 2011, Accepted 12 Oct 2011, Published online: 04 Jul 2012

References

  • Lou , X W , Deng , D , Lee , J Y , Feng , J and Archer , L A . 2008 . Self-supported formation of needlelike Co3O4 nanotubes and their application as lithium-ion battery electrodes . Adv. Mater. , 20 : 258 – 262 .
  • Lei , M , Hu , Q R , Wang , X , Wang , S L and Tang , W H . 2010 . Facile route to straight ZnGa2O4 nanowires and their catholuminescence properties . J. Alloys Compd. , 489 : 663 – 666 .
  • Dong , Y J , Tian , B Z , Kempa , T J and Lieber , C M . 2009 . Coaxial group III-nitride nanowire photovoltaics . Nano Lett. , 9 : 2183 – 2187 .
  • Teng , X W , Han , W Q , Ku , W and Hucker , M . 2008 . Synthesis of ultrathin palladium and platinum nanowires and a study of their magnetic properties . Angew. Chem. Int. Ed. , 47 : 2055 – 2058 .
  • Lei , M , Yang , H , Li , P G and Tang , W H . 2008 . Synthesis of GaN nanowires on gold-coated SiC substrates by novel pulsed electron deposition technique . Appl. Surf. Sci. , 254 : 1947 – 1952 .
  • Acharya , S , Gautam , U K , Sasaki , T , Bando , Y , Golan , Y and Ariga , K . 2008 . Ultra narrow PbS nanorods with intense fluorescence . J. Am. Chem. Soc. , 130 : 4594 – 4595 .
  • Lei , M , Hu , Q R , Wang , S L and Tang , W H . 2010 . Structural and optical properties of Al-doped SnO2 nanowires . Mater. Lett. , 64 : 19 – 21 .
  • Carlson , L J , Maccagnano , S E , Zheng , M , Silcox , J and Krauss , T D . 2007 . Fluorescence efficiency of individual carbon nanotubes . Nano Lett. , 7 : 3698 – 3703 .
  • Lei , M , Hu , Q R , Wang , S L and Tang , W H . 2009 . Catalytic-free growth of ZnGa2O4 nanowires on amorphous carbon layers . Mater. Lett. , 63 : 1928 – 1930 .
  • Meng , G , Fang , X D , Zhou , Y K , Seo , J , Dong , W W , Hasegawa , S , Asahi , H , Tambo , H , Kong , M G and Li , L . 2010 . Ultra-low turn-on field from ultra-long ZnO nanowire arrays emitters . J. Alloys Compd. , 491 : 72 – 76 .
  • Lei , M , Yang , H , Li , P G and Tang , W H . 2008 . Synthesis and characterization of straight and stacked-sheet AlN nanowires with high purity . J. Alloys Compd. , 459 : 338 – 342 .
  • Barrelet , C J , Greytak , A B and Lieber , C M . 2004 . Nanowire photonic circuit elements . Nano Lett. , 4 : 1981 – 1985 .
  • Lei , M , Yang , H , Guo , Y F , Song , B , Li , P G and Tang , W H . 2007 . Synthesis and optical property of high purity AlN nanowires . Mater. Sci. Eng. B , 143 : 85 – 89 .
  • Zhang , L , Zaric , S , Tu , X , Wang , X , Zhao , W and Dai , H . 2008 . Assessment of chemically separated carbon nanotubes for nanoelectronics . J. Am. Chem. Soc. , 130 : 2686 – 2691 .
  • Kijima , N , Ikeda , T , Oikawa , K , Izumi , F and Yoshimura , Y . 2004 . Crystal structure of an open-tunnel oxide alpha-MnO2 analyzed by Rietveld refinements and MEM-based pattern fitting . J. Solid State Chem. , 177 : 1258 – 1267 .
  • Espinal , L , Suib , S L and Rusling , J F . 2004 . Electrochemical catalysis of styrene epoxidation with film of MnO2 nanoparticles and H2O2 . J. Am. Chem. Soc. , 126 : 7676 – 7682 .
  • Wang , X and Li , Y D . 2003 . Synthesis and formation mechanism of manganese dioxide nanowires/nanorods . Chem. Eur. J. , 9 : 300 – 306 .
  • Mathew , V , Lim , J , Kang , J , Gim , J , Rai , A K and Kim , J . 2011 . Self-assembled mesoporous manganese oxide with high surface area by ambient temperature synthesis and its enhanced electrochemical properties . Electrochem. Commun. , 13 : 730 – 733 .
  • Cheng , F , Tao , Z , Liang , J and Chen , J . 2008 . Template-directed materials for rechargeable lithium-ion battery . Chem. Mater. , 20 : 667 – 681 .
  • Winter , M and Brodd , R J . 2004 . What are batteries, fuel cells and supercapacitors? . Chem. Rev. , 104 : 4245 – 4269 .
  • Reddy , A LM , Shaijumon , M M , Gowda , S R and Ajayan , P M . 2009 . Coaxial MnO2/carbon nanotubes arrays electrodes for high-performance lithium batteries . Nano. Lett. , 9 : 1002 – 1006 .
  • Jiao , F , Harrison , A and Bruce , P G . 2007 . Order three-dimensional arrays of monodispersed Mn3O4 nanoparticles with a core-shell structure and spin-glass behavior . Angew. Chem. Int. Ed. , 46 : 3946 – 3950 .
  • Jiao , F and Bruce , P G . 2007 . Mesoporous crystalline beta-MnO2-a reversible positive electrode for rechargeable lithium batteries . Adv. Mater. , 19 : 657 – 660 .
  • Hu , C C and Wang , C C . 2003 . Nanostructures and capacitive characteristics of hydrous manganese oxide prepared by electrochemical deposition . J. Electrochem. Soc. , 150 : A1079 – A1084 .
  • Kunduraci , M and Amatucci , G G . 2006 . Synthesis and characterization of nanostructured 4.7 VLixMn1.5Ni0.5O4 spinels for high-power lithium-ion batteries . J. Electrochem. Soc. , 153 : 1345 – 1352 .
  • Kuratani , K , Tatsumi , K and Kuriyama , N . 2007 . Manganese oxide nanorod with 2 x 4 tunnel structure: Synthesis and electrochemical properties . Cryst. Growth Des. , 7 : 1375 – 1377 .
  • Wei , M , Konishi , Y , Zhou , H , Sugihara , H and Arakawa , H . 2005 . Synthesis of single-crystal manganese dioxide nanowires by a soft chemical process . Nanotechnology , 16 : 245 – 249 .
  • Wu , M S . 2005 . Electrochemical capacitance from manganese oxide nanowire structure synthesized by cyclic voltammetric electrodeposition . Appl. Phys. Lett. , 87 : 153102(1) – 153102(3) .
  • Zhong , C , Wang , J Z , Zhu , Z Z , Chou , S L , Chen , Z X , Li , Y and Liu , H K . 2010 . Hydrothermal synthesis of nanostructured MnO2 under magnetic field rechargeable lithium batteries . J. Solid State Electrochem. , 14 : 1743 – 1747 .
  • Li , G , Jiang , L , Pang , H T and Peng , H . 2007 . Synthesis of gamma-MnO2 single-crystalline nanobelts . Mater. Lett. , 61 : 3319 – 3322 .
  • Sugantha , M , Ramakrishnan , P A , Hermann , A M , Warmsingh , C P and Ginley , D S . 2003 . Nanostructured MnO2 for Li batteries . Int. J. Hydrogen Energy , 28 : 597 – 600 .
  • Wang , H E , Lu , Z G , Qian , D , Fang , S and Zhang , J . 2008 . Facile synthesis and electrochemical characterization of hierarchical alpha-MnO2 spheres . J. Alloys Compd. , 466 : 250 – 257 .
  • Kim , T W , Yoo , H , Kim , I Y , Ha , H W , Han , A R , Chang , J S , Lee , J S and Hwang , S J . 2011 . A composite formation route to well-crystalline manganese oxide nanocrystals: High catalytic activity of manganate-alumina nanocomposites . Adv. Funct. Mater. , 21 : 2301 – 2310 .
  • Li , F , Wu , J F , Qin , Q H , Li , Z and Huang , X T . 2010 . Facile synthesis of gamma-MnOOH micro/nanorods and their conversion to beta-MnO2 Mn3O4 . J. Alloys Compd. , 492 : 339 – 346 .
  • Gong , L Y , Su , L H and Jiang , H Y . 2011 . Rapid synthesis of homogeneous MnO2/multi-wall carbon nanoturbes nanostructure and its electrochemical capacitive behavior . Mater. Lett. , 65 : 1588 – 1590 .
  • Teng , F , Santhanagopalan , S , Wang , Y and Meng , D D . 2010 . In-stiu hydrothermal synthesis of three-dimensional MnO2-CNT nanocomposites and their electrochemical properties . J. Alloys Compd. , 499 : 259 – 264 .
  • Cheng , F Y , Zhao , J Z , Song , W N , Li , C S , Ma , H , Chen , J and Shen , P W . 2006 . Facile controlled synthesis of MnO2 nanostructures of novel shapes and their application in batteries . Inorg. Chem. , 45 : 2038 – 2044 .
  • Cui , H J , Huang , H Z , Fu , M L , Yuan , B L and Pearl , W . 2011 . Facile synthesis and catalytic properties of single crystalline beta-MnO2 nanorods . Catal. Commun. , 12 : 1339 – 1343 .

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