Photonic Crystal Structures as a Basis for a Three‐Dimensionally Interpenetrating Electrochemical‐Cell System
暂无分享,去创建一个
Justin C. Lytle | Andreas Stein | William H. Smyrl | Seung M. Oh | Kyu T. Lee | A. Stein | W. Smyrl | J. C. Lytle | N. S. Ergang | K. T. Lee | S. M. Oh | Kyu Tae Lee | Nicholas S. Ergang | K. T. Lee
[1] K. Poeppelmeier,et al. Three-Dimensionally Ordered Macroporous Li4Ti5O12: Effect of Wall Structure on Electrochemical Properties , 2006 .
[2] W. Cai,et al. Direct Growth of Mono‐ and Multilayer Nanostructured Porous Films on Curved Surfaces and Their Application as Gas Sensors , 2005 .
[3] A. Stein,et al. Synthesis and Characterization of Three-Dimensionally Ordered Macroporous Carbon/Titania Nanoparticle Composites , 2005 .
[4] Christopher P. Rhodes,et al. Direct Electrodeposition of Nanoscale Solid Polymer Electrolytes via Electropolymerization of Sulfonated Phenols , 2005 .
[5] J. Zeng,et al. Synthesis of graphitic ordered macroporous carbon with a three-dimensional interconnected pore structure for electrochemical applications. , 2005, The journal of physical chemistry. B.
[6] M. Nathan,et al. Three-dimensional thin-film Li-ion microbatteries for autonomous MEMS , 2005, Journal of Microelectromechanical Systems.
[7] Justin C. Lytle,et al. Effect of a Macropore Structure on Cycling Rates of LiCoO2 , 2005 .
[8] K. Kanamura,et al. Preparation of three dimensionally ordered macroporous Li0.35La0.55TiO3 by colloidal crystal templating process , 2005 .
[9] K. Kanamura,et al. Three dimensionally ordered composite solid materials for all solid-state rechargeable lithium batteries , 2005 .
[10] P. Gómez‐Romero,et al. Nanocomposite Hybrid Molecular Materials for Application in Solid‐State Electrochemical Supercapacitors , 2005 .
[11] Justin C. Lytle,et al. Synthesis and Rate Performance of Monolithic Macroporous Carbon Electrodes for Lithium‐Ion Secondary Batteries , 2005 .
[12] Jeffrey W. Long,et al. Charge insertion into hybrid nanoarchitectures: mesoporous manganese oxide coated with ultrathin poly(phenylene oxide) , 2004 .
[13] Bruce Dunn,et al. Three-dimensional battery architectures. , 2004, Chemical reviews.
[14] Christopher P. Rhodes,et al. Nanoscale Polymer Electrolytes: Ultrathin Electrodeposited Poly(Phenylene Oxide) with Solid-State Ionic Conductivity , 2004 .
[15] Justin C. Lytle,et al. Structural and electrochemical properties of three-dimensionally ordered macroporous tin(IV) oxide films , 2004 .
[16] Bruce Dunn,et al. Hierarchical battery electrodes based on inverted opal structures , 2002 .
[17] Andreas Stein,et al. Colloidal crystal templating of three-dimensionally ordered macroporous solids: materials for photonics and beyond , 2001 .
[18] Mietek Jaroniec,et al. Ordered mesoporous carbons , 2001 .
[19] Bruce Dunn,et al. Electrically conductive oxide aerogels: newmaterials in electrochemistry , 2001 .
[20] Michele L. Anderson,et al. Electronic connection to the interior of a mesoporous insulator with nanowires of crystalline RuO2 , 2000, Nature.
[21] Younan Xia,et al. Monodispersed Colloidal Spheres: Old Materials with New Applications , 2000 .
[22] Jason D. Hill,et al. Doped Vanadium Oxides as Host Materials for Lithium Intercalation , 1999 .
[23] R. Murray,et al. Permeant molecular sieving with electrochemically prepared 6-nm films of poly(phenylene oxide) , 1991 .
[24] N. Oyama,et al. Anodic Oxidation of 2,6‐Dimethylphenol in Various Electrolytic Solutions , 1987 .
[25] P. Lacaze,et al. Obtaining thin films of “reactive polymers” on metal surfaces by electrochemical polymerization part I. Reactivity of functional groups in a carbonyl substituted polyphenylene oxide film , 1978 .