1 - 5 |
Electrochromic devices on polyester foil Azens A, Gustavsson G, Karmhag R, Granqvist CG |
7 - 13 |
Nanometer scale-electrochromic modification of NiO films using a novel technique of scanning near-field optical microscopy Iwata F, Mikage K, Sakaguchi H, Kitao M, Sasaki A |
15 - 22 |
Influence of the porosity of RF sputtered Ta2O5 thin films on their optical properties for electrochromic applications Corbella C, Vives M, Pinyol A, Porqueras I, Person C, Bertran E |
23 - 33 |
Structural and electrochemical study of Li+ insertion in the infrared reflectance modulating compound LixWO3 center dot H2O Bessiere A, Beluze L, Morcrette M, Lucas V, Baffier N |
35 - 41 |
Optical absorption of Li-intercalated polycrystalline tungsten oxide films: comparison to large polaron theory Larsson AL, Sernelius BE, Niklasson GA |
43 - 49 |
Oxygen vacancy in cubic WO3 studied by first-principles pseudopotential calculation Karazhanov SZ, Zhang Y, Mascarenhas A, Deb S, Wang LW |
51 - 58 |
Optical absorption and durability amorphous tungsten oxide of sputtered films Berggren L, Niklasson GA |
59 - 64 |
Intercalation inWO(3) and WO3 : Li films Avellaneda CO, Bulhoes LOS |
65 - 72 |
Mesoporous sol-gel WO3 thin films via poly(styrene-co-allyl-alcohol) copolymer templates Zayim EO, Liu P, Lee SH, Tracy CE, Turner JA, Pitts JR, Deb SK |
73 - 80 |
Degradation of a solid state electrochromic device Person C, Porqueras I, Vives M, Corbella C, Pinyol A, Bertran E |
81 - 87 |
Improving the durability of ion insertion materials in a liquid electrolyte Lee SH, Cheong HM, Liu P, Tracy CE, Pitts JR, Deb SK |
89 - 96 |
XPS and IR studies of transparent InVO4 films upon Li charge-discharge reactions Cimino N, Artuso F, Decker F, Orel B, Vuk AS, Zanoni R |
97 - 104 |
Performance and durability of electrochromic windows with carbon-based counter electrode and their application in the architectural and automotive fields Kubo T, Tanimoto J, Minami M, Toya T, Nishikitani Y, Watanabe H |
XI - XII |
IME-5 guest editor's foreword Pitts JR |
105 - 110 |
Comparison of optical, structural and electrochromic properties of undoped andWO(3)-doped Nb2O5 thin films Pehlivan E, Tepehan FZ, Tepehan GG |
111 - 116 |
Raman spectroscopic studies of amorphous vanadium oxide thin films Lee SH, Cheong HM, Seong MJ, Liu P, Tracy CE, Mascarenhas A, Pitts JR, Deb SK |
117 - 121 |
Photochromic properties of WO3 and WO3 : X (X=Ti, Nb, Ta and Zr) thin films Avellaneda CO, Bulhoes LOS |
123 - 129 |
Characterization of nano-structured thin films of electrodeposited Ce-Co mixed oxides for EC devices Yoshino T, Masuda H |
131 - 137 |
Characteristics of e-beam deposited electrochromic CeO2 thin films Porqueras I, Person C, Corbella C, Vives M, Pinyol A, Bertan E |
139 - 148 |
RF sputtering deposition of Ag/ITO coatings at room temperature Bertran E, Corbella C, Vives M, Pinyol A, Person C, Porqueras I |
149 - 153 |
Molecular properties of partially substituted nickel oxide clusters Nagai J, Morisaki S |
155 - 160 |
Effect of interfacial property on electrochromic response speed of Ta2O5/NiO and Ta2O5/Ni(OH)(2) Ahn KS, Nah YC, Sung YE |
161 - 168 |
Composite Au-NiO films Ferreira FF, Haddad PS, Fantini MCA, Brito GES |
169 - 173 |
Optimized nickel-oxide-based electrochromic thin films Avendano E, Azens A, Isidorsson J, Karmhag R, Niklasson GA, Granqvist CG |
175 - 180 |
Optical and electrochromic properties of RF reactively sputtered WO3 filMS Washizu E, Yamamoto A, Abe Y, Kawamura M, Sasaki K |
181 - 189 |
Influence of water on the electrochemical properties of (CeO2)(x)(TiO2)(1-x) and WO3 sol-gel coatings and electrochromic devices Sun DL, Heusing S, Puetz J, Aegerter MA |
191 - 200 |
Preparation and structural investigations of electrochromic nanosized NiOx films made via the sol-gel route Korosec RC, Bukovec P, Pihlar B, Vuk AS, Orel B, Drazic G |
201 - 208 |
Characterizations of mixed Bi/V oxide films, deposited via sol-gel route, used as electrodes in asymmetric liquid crystal cells Cazzanelli E, Marino S, Bruno V, Castriota M, Scaramuzza N, Strangi G, Versace C, Ceccato R, Carturan G |
209 - 216 |
Current state of the art for NOC-AGC electrochromic windows for architectural and automotive applications Kubo T, Shinada T, Kobayashi Y, Imafuku H, Toya T, Akita S, Nishikitani Y, Watanabe H |
217 - 221 |
Electrochromism of amorphous ruthenium oxide thin films Lee SH, Liu P, Cheong HM, Tracy CE, Deb SK |
223 - 228 |
Electrochromic and chemochromic performance of mesoporous thin-film vanadium oxide Liu P, Lee SH, Tracy CE, Turner JA, Pitts JR, Deb SK |
229 - 233 |
Effects of tantalum oxide films on stability and optical memory in electrochromic tungsten oxide films Nah YC, Ahn KS, Sung YE |
235 - 246 |
Development of sol-gel redox I-3(-)/I- electrolytes and their application in hybrid electrochromic devices Orel B, Vuk AS, Jese R, Lianos P, Stathatos E, Judeinstein P, Colomban P |
247 - 255 |
In situ resonance micro-Raman and UV-visible spectroelectrochemical studies of an electrochromic device with an I-3(-)/I- redox sol-gel electrolyte Vuk AS, Orel B, Spreizer H, Colomban P |
257 - 267 |
An indium hexacyanoferrate-tungsten oxide electrochromic battery with a hybrid K+/H+-conducting polymer electrolyte Tung TS, Chen LC, Ho KC |
269 - 277 |
Switching behavior of the Prussian blue-indium hexacyanoferrate electrochromic device using the K+-doped poly-AMPS electrolyte Huang YH, Chen LC, Ho KC |
279 - 287 |
The influences of operating voltage and cell gap on the performance of a solution-phase electrochromic device containing HV and TMPD Ho KC, Fang YW, Hsu YC, Chen LC |
289 - 303 |
Phthalocyanines and related compounds as switchable materials upon strong irradiation: the molecular engineering behind the optical limiting effect Dini D, Barthel M, Schneider T, Ottmar M, Verma S, Hanack M |
305 - 308 |
New electrochromic mirror systems Richardson TJ |
309 - 314 |
Structural and electronic properties of magnesium-3D transition metal switchable mirrors Farangis B, Nachimuthu P, Richardson TJ, Slack JL, Meyer BK, Perera RCC, Rubin MD |
315 - 321 |
Coloured electrochromic "paper-quality" displays based on modified mesoporous electrodes Corr D, Bach U, Fay D, Kinsella M, McAtamney C, O'Reilly F, Rao SN, Stobie N |