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61. Ivanova T., Gesheva K. A., Popkirov G., Ganchev M., Tzvetkova E. , Electrochromic properties of atmospheric CVD MoO3 and MoO 3-WO3 films and their application in electrochromic devices, (2005) Materials Science and Engineering B: Solid-State Materials for Advanced Technology, (2005) 119 (3), pp. 232-239.
325. Dhanasankar, M., Purushothaman, K.K., Muralidharan, G., “Effect of tungsten on the electrochromic behaviour of sol-gel dip coated molybdenum oxide thin films”, Materials Research Bulletin, volume 45, issue 5, year 2010, pp. 542 – 545.
326. Lavi, O., Frey, G.L., Siegmann, A., Ein-Eli, Y. Enhanced tungstate electrochromism via formation of transparent conductive networksElectrochemistry Communications 10 (8), pp. 1210-1213, 2008
327. Dhanasankar, M., Purushothaman, K.K., Muralidharan, G., “Optical, structural and electrochromic studies of molybdenum oxide thin films with nanorod tructure, Solid State Sciences, volume 12, issue 2, year 2010, pp. 246 - 251
328. Bathe, S.R., Patil, P.S., “Influence of Nb doping on the electrochromic properties of WO3 films”, 2007 Journal of Physics D: Applied Physics 40 (23), pp. 7423-7431
329. Tomás, S.A., Arvizu, M.A., Zelaya-Angel, O., Rodríguez, P Effect of ZnSe doping on the photochromic and thermochromic properties of MoO3 thin films”, 2009, Thin Solid Films 518 (4), pp. 1332-1336

330. Kadam, P.M., Tarwal, N.L., Shinde, P.S., Patil, R.S., Deshmukh, H.P., Patil, P.S. From beads-to-wires-to-fibers of tungsten oxide: Electrochromic response”, 2009, Applied Physics A: Materials Science and Processing 97 (2), pp. 323-330.

331. Mahajan, S.S., Mujawar, S.H., Shinde, P.S., Inamdar, A.I., Patil, P.S, “ Structural, morphological, optical and electrochromic properties of Ti-doped MoO3 thin films”, 2009 Solar Energy Materials and Solar Cells 93 (2), pp. 183-187.
332. From beads-to-wires-to-fibers of tungsten oxide: Electrochromic response, Kadam, P.M., Tarwal, N.L., Shinde, P.S., Patil, R.S., Deshmukh, H.P., Patil, P.S., 2009 Applied Physics A: Materials Science and Processing 97 (2), pp. 323-330.
333. Lee, Y.J., Jeon, H.Y., Park, C.W., Kim, D.-G., Kim, Y.D., Optical properties of molybdenum oxide thin films deposited by chemical vapor transport of MoO3(OH)2, 2009 TMS Annual Meeting 3, pp. 27-32.
334. Lee, Y.J., Seo, Y.I., Kim, S.H., Kim, D.-G., Kim, Y.D., “Deposition of Mo oxide and metallic Mo films by chemical vapor transport of MoO3(OH)2”, 2009 Chemical Vapor Deposition 15 (7-9), pp. 199-203.
335. Durrant, S.F., Trasferetti, B.C., Scarmínio, J., Davanzo, C.U., Rouxinol, F.P.M., Gelamo, R.V., Bica de Moraes, M.A., “Developments in hot-filament metal oxide deposition (HFMOD)”, Thin Solid Films 516 (5), pp. 789-793, 2008.
336. Patzke, G.R., Zhou, Y., “Targeted synthesis of nanostructured oxide materials”, Materials Research Society Symposium Proceedings 1056, pp. 119-130, 2008.
337. Sun, X., Cao, H., Liu, Z., Li, J., “Influence of annealing temperature on microstructure and optical properties of sol-gel derived tungsten oxide films”, Applied Surface Science 255 (20), pp. 8629-8633, 2009.
338. Lee, Y.J., Seo, Y.I., Kim, S.-H., Kim, D.-G., Kim, Y.D., „Optical properties of molybdenum oxide thin films deposited by chemical vapor transport of MoO3(OH)2”, Applied Physics A: Materials Science and Processing 97 (1), pp. 237-241, 2009.

339. Sauvet, K., Rougier, A., Sauques, L., “Electrochromic WO3 thin films active in the IR region”, Solar Energy Materials and Solar Cells, 92 (2) (2008) pp. 209-215.

340. Kondrachova, L., Hahn, B.P., Vijayaraghavan, G., Williams, R.D., Stevenson, K.J. “Cathodic electrodeposition of mixed molybdenum tungsten oxides from peroxo-polymolybdotungstate solutions”,

Langmuir 22 (25) (2006) 10490-10498.

341. Hsu, C.-S., Chan, C.-C., Huang, H.-T., Peng, C.-H., Hsu, W.-C., ”Electrochromic properties of nanocrystalline MoO3 thin films”, Thin Solid Films 516 (15) (2008) pp. 4839-4844.

342. Kiebach, R., Pienack, N., Bensch, W., Grunwaldt, J.-D., Michailovski, A., Baiker, A., Fox, T., (...), Patzke, G.R., Hydrothermal formation of W/Mo-oxides: A multidisciplinary study of growth and shape, Chemistry of Materials 20 (9) (2008) 3022-3033.

343. Światowska-Mrowiecka, J., De Diesbach, S., Maurice, V., Zanna, S., Klein, L., Briand, E., Vickridge, I., Marcus, P., “Li-ion intercalation in thermal oxide thin films of MoO3 as studied by XPS, RBS, and NRA”, Journal of Physical Chemistry C 112 (29) (2008) 11050-11055.

344. Lavi, O., Frey, G.L., Siegmann, A., Ein-Eli, Y., „Enhanced tungstate electrochromism via formation of transparent conductive networks“, Electrochemistry Communications 10 (8) (2008) 1210-1213.

345. Mahajan, S.S., Mujawar, S.H., Shinde, P.S., Inamdar, A.I., Patil, P.S.,“Structural, morphological, optical and electrochromic properties of Ti-doped MoO3 thin films”, Solar Energy Materials and Solar Cells 93 (2) (2009) pp. 183 -187.

346Meneses-Nava, M.A., Barbosa-García, O., Maldonado, J.L., Ramos-Ortíz, G., Pichardo, J.L., Torres-Cisneros, M., García-Hernández, M., (...), Carrillo-Romo, F.J., “Yb3+ quenching effects in co-doped polycrystalline BaTiO3:Er3+, Yb3+”, Optical Materials 31 (2008), pp. 252-260.

347. Cheng, Q., He, Y., Pavlinek, V., Li, C., Saha, P., Surfactant-assisted polypyrrole/titanate composite nanofibers: Morphology, structure and electrical properties, Synthetic Metals 158 (21-24) (2008) 953-957.

348. Bathe, S.R., Patil, P.S., “Influence of Nb doping on the electrochromic properties of WO3 films”, Journal of Physics D: Applied Physics 40 (23) (2007) pp. 7423-7431.

349. Durrant, S.F., Trasferetti, B.C., Scarmínio, J., Davanzo, C.U., Rouxinol, F.P.M., Gelamo, R.V., Bica de Moraes, M.A., “Developments in hot-filament metal oxide deposition (HFMOD)”, Thin Solid Films 516 (5) (2008) pp. 789-793.

350. Sauvet, K., Rougier, A., Sauques, L., “Electrochromic WO3 thin films active in the IR region”, Solar Energy Materials and Solar Cells, 92 (2) (2008) pp. 209-215.

351. Niklasson, G.A., Granqvist, C.G. “Electrochromics for smart windows: Thin films of tungsten oxide and nickel oxide, and devices based on these”, Journal of Materials Chemistry 17 (2), (2007) pp. 127-156

352. Bathe, S.R., Patil, P.S., ”Еlectrochromic characteristics of fibrous reticulated WO3 thin films prepared by pulsed spray pyrolysis technique”, Solar Energy Materials and Solar Cells 91 (12) (2007) 1097-1101

353. Kim, Y.-S., Ahn, H.-J., Shim, H.-S., Nam, S.H., Seong, T.-Y., Kim, W.B., “Pt-embedded MoO3 electrodes for rechargeable lithium batteries”, Electrochemical and Solid-State Letters 10 (8) (2007) A180-A183

354. Epifani, M., Imperatori, P., Mirenghi, L., Schioppa, M., Siciliano, P. Synthesis and characterization of MoO3 thin films and powders from a molybdenum chloromethoxide  , Chemistry of Materials 16 (25) (2004) 5495-5501.
355. Luo, W., Fu, X.K., Ma, L.H.,“The research on the high quality TiO2, MoO3-doped WO3 electrochromic film” , Chinese Chemical Letters 18 (2007) 883-886.

356. Ramana, C.V., Julien, C.M.“Chemical and electrochemical properties of molybdenum oxide thin films prepared by reactive pulsed-laser assisted deposition” Chemical Physics Letters 428 (1-3) (2006) pp. 114-118

357. Bakir, M., Hassan, I., Green, O.“Synthesis and structure of the first molybdenum compound of N,O,N-hydroxybis(2-pyridyl)methanolato (η3-dpkO, OH). The structure of [Mo(O)2(μ-O)(η3-dpkO,OH)] 2·2dmso”Journal of Coordination Chemistry 59 (17) (2006) pp. 1953-1962

62. Gogova D., Gesheva K., Kakanakova-Georgieva A., Surtchev M. Investigation of the structure of tungsten oxide films obtained by chemical vapor deposition, (2000) EPJ Applied Physics, 11 (3), pp. 167-174.

358. Yang, L., Xiao, Y., Liu, S., Li, Y., Cai, Q., Luo, S., Zeng, G., Photocatalytic reduction of Cr(VI) on WO3 doped long TiO2 nanotube arrays in the presence of citric acid”, Applied Catalysis B: Environmental 94 (1-2), pp. 142-149, 2010.


359. Ajmera, H.M., Heitsch, A.T., Anderson, T.J., Wilder, C.B., Reitfort, L.L., McElwee-White, L., Norton, D.P. Deposition of W Nx Cy for diffusion barrier application using the imido guanidinato complex W (Ni Pr) Cl3 [Pri NC (N Me2) Ni Pr] Journal of Vacuum Science and Technology B: Microelectronics and Nanometer Structures 26 (5), pp. 1800-1807
360. Mitra, S., Sridharan, K., Unnam, J., Ghosh, K. Synthesis of nanometal oxides and nanometals using hot-wire and thermal CVD2008Thin Solid Films 516 (5), pp. 798-802
361. Cross, W.B., Parkin, I.P., O'Neill, S.A., Williams, P.A., Mahon, M.F., Molloy, K.C., “Tungsten oxide coatings from the aerosol-assisted chemical vapor deposition of W(OAr)6 (Ar = C6H5, C6H4F-4, C6H3F2-3,4); photocatalytically active γ-WO3 films Chemistry of Materials 15 (14), pp. 2786-2796

362. Szilágyi, I.M., Hange, F., Madarász, J., Pokol, G., In situ HT-XRD study on the formation of hexagonal ammonium tungsten bronze by partial reduction of ammonium paratungstate tetrahydrate”, European Journal of Inorganic Chemistry (17) (2006) pp. 3413-3418.


363 Palgrave, R.G., Parkin, I.P., Chemical vapour deposition of titanium chalcogenides and pnictides and tungsten oxide thin films”, New Journal of Chemistry 30 (4), (2006) pp. 505-514.
364. Shaw, G., Parkin, I.P., Pratt, K.F.E., Williams, D.E., Control of semiconducting oxide gas-sensor microstructure by application of an electric field during aerosol-assisted chemical vapour deposition”, Journal of Materials Chemistry 15 (1) (2005) pp. 149-154
365. Palgrave, R.G., Parkin, I.P., Aerosol assisted chemical vapour deposition of photochromic tungsten oxide and doped tungsten oxide thin films”, Journal of Materials Chemistry 14 (19), 2004, pp. 2864-2867
366. O'Neill, S., Parkin, I.P., Clark, R.J.H., Mills, A., Elliott, N., Photocatalytically active γ-WO3 films from the atmospheric pressure CVD of WOCl4 with ethyl acetate or ethanol”, Chemical Vapor Deposition 10 (3), (2004) pp. 136-141
367. Ling, H., Han, Y.X., Lu, Y.F., “CO2 laser-assisted local deposition of diamond films by combustion-flame method”, Proceedings of SPIE - The International Society for Optical Engineering 6459, art. no. 64590Y, 2007

63. K. A. Gesheva, T. Ivanova, D. Gogova and G. Beshkov, “Formation of MoSi2 by vacuum rapid thermal annealing in vacuum of CVD - Mo films on silicon substrate”, Vacuum 58, 2000, 502-508.
368. Sharlandjiev, P., Gushterova, P. “Optical characteristics of very thin films”, Vacuum 69 (1-3), (2002) 399-403.
369. Beensh-Marchwicka, G., Prociów, E., Osadnik, S. “High-temperature thermal converter based on thin film Ge-Sb-V/TiSi 2 thermocouples”, 28th International Spring Seminar on Electronics Technology: Meeting the Challenges of Electronics Technology Progress, 2005, art. no. 1490997, pp. 50-53, 2005
370. Zhang MG, Chen H, Properties of Si/Mo thin films deposited by magnetron sputtering method,

RARE METAL MATERIALS AND ENGINEERING 34 (7): 1158-1161 JUL 2005.

64. K. Gesheva, T. Ivanova, F. Hamelmann, “Electrically Activated Thin Film Optical Coatings as Functional Layers in Electrochromic Devices”

(2006)Solar Energy Materials and Solar Cells 90 9150 2532-2541.

371. Takeyasu, T., Takase, S., Shimizu, Y., „Electrochromic properties of mixed metal oxide thin-film and its application to nitrate-ion sensor”, ECS Transactions 3 (38) (2007) pp. 1- 6.


372. Sivakumar, R., Sanjeeviraja, C., Jayachandran, M., Gopalakrishnan, R., Sarangi, S.N., Paramanik, D., Som, T., “High temperature grown transition metal oxide thin films: Tuning physical properties by MeV N+-ion bombardment”, Journal of Physics D: Applied Physics 41 (12) (2008) art. no. 125304.
373. Wang, W., Pang, Y., Hodgson, S.N.B., XRD studies of thermally stable mesoporous tungsten oxide synthesised by a templated sol-gel process from tungstic acid precursor, Microporous and Mesoporous Materials 121 (1-3) (2009) 121-128
374. Sivakumar, R., Sanjeeviraja, C., Jayachandran, M., Gopalakrishnan, R., Sarangi, S.N., Paramanik, D., Som, T, “MeV N+-ion irradiation effects on α-MoO3 thin films”,Journal of Applied Physics 101 (3), (2007) art. no. 034913.
375. Granqvist, C.G., “Transparent conductors as solar energy materials: A panoramic review”, Solar Energy Materials and Solar Cells 91 (2007), pp. 1529-1598

65. D. Gogova, A. Iossifova, T. Ivanova, Zl. Dimitrova, K. A. Gesheva,“Electrochromic Behavior in CVD Grown Tungsten Oxide Films”

J. Crystal Growth 198/199 (1999) 1230-1234.

376. Bitner, T.W., Zink, J.I. “Gas-phase photofragmentation of tris (methyl vinyl ketone) tungsten(0) and the relationship to laser-assisted CVD of tungsten oxide thin films” , Inorganic Chemistry 41 (4) (2002) 967-972.


377. Hao, J., Studenikin, S.A., Cocivera, M. “Transient photoconductivity properties of tungsten oxide thin films prepared by spray pyrolysis”, Journal of Applied Physics 90, (2010), 5064-5069; 2001.
378. C.-S. Hsu, C.-K. Lin, C.-c. Chan, C.C. Chang, C. Y. Tsay, “Preparation and characteization of nanocrystalline porous TiO2/WO3 composite thin films”, Thin Solid Films, 494 (1-2) (2006) 228-233.
379. Abramova, V.V., Sinitskii, A.S., Laptinskaya, T.V., Veresov, A.G., Goodilin, E.A., Tretyakov, Yu.D., “Nanoporous electrochromic coatings based on tungsten oxide”, Doklady Chemistry 407 (1), (2006) pp. 31-34.
380. T.Witner, J.I. Zink, „ Gas-phase photofragmentation of tris( methyl vinyl ketone) tungsten (o) and the relation to laser-assisted CVD of tungsten oxide thin films”, Inorganic Chemistry 41(4) (2002) 967-972.

66. Gogova D., Gesheva K., Szekeres A., Sendova-Vassileva M. Structural and optical properties of CVD thin tungsten oxide films(1999) Physica Status Solidi (A) Applied Research, 176 (2), pp. 969-984.
381. Işik, D., Ak, M., Durucan, C.,“Structural, electrochemical and optical comparisons of tungsten oxide coatings derived from tungsten powder-based sols”, Thin Solid Films 518 (1), pp. 104-111 2009.

382. Balaji, S., Djaoued, Y., Albert, A.-S., Ferguson, R.Z., Brüning, R., Su, B.-L., “Construction and characterization of tunable meso-/macroporous tungsten oxide-based transmissive electrochromic devices”, J. of Materials Science, 44 (24), pp. 6608-6616, 2009.


383. Zhang, Q., Chakraborty, A.K., Lee, W.I. , “W18O49 and WO3 nanorod arrays prepared by AAO-templated electrodeposition method “, Bulletin of the Korean Chemical Society 30 (1), pp. 227-229, 2009.
384. Mitra, S., Sridharan, K., Unnam, J., Ghosh, K., „Synthesis of nanometal oxides and nanometals using hot-wire and thermal CVD“, Thin Solid Films, 516 (5) (2008) pp. 798-802.
385. Ashraf, S., Blackman, C.S., Palgrave, R.G., Naisbitt, S.C., Parkin, I.P., “Aerosol assisted chemical vapour deposition of WO3 thin films from tungsten hexacarbonyl and their gas sensing properties”, Journal of Materials Chemistry, 17 (35) (2007) pp. 3708-3713
386. Jeon, S., Yong, K.,“Direct synthesis of W18O49 nanorods from W 2N film by thermal annealing”, Nanotechnology 18 (24) (2007) art. no. 245602
387. Jeon, S., Yong, K. Synthesis and characterization of tungsten oxide nanorods from chemical vapor deposition-grown tungsten film by low-temperature thermal annealing Journal of Materials Research 23 (5), pp. 1320-1326
388. Patil, P.S., Mujawar, S.H., Inamdar, A.I., Sadale, S.B. Electrochromic properties of spray deposited TiO2-doped WO 3 thin filmsApplied Surface Science 250 (1-4), pp. 117-123,2005.
389. Luca, V., Blackford, M.G., Finnie, K.S., Evans, P.J., James, M., Lindsay, M.J., Skyllas-Kazacos, M., Barnes, P.R.F. Sol-gel tungsten oxide/titanium oxide multilayer nanoheterostructured thin films: Structural and photoelectrochemical properties Journal of Physical Chemistry C 111 (50), pp. 18479-18492, 2007
390. Mujawar, S.H., Inamdar, A.I., Patil, S.B., Patil, P.S.,“Electrochromic properties of spray-deposited niobium oxide thin films”, Solid State Ionics 177 (37-38), (2006) pp. 3333-3338.


67. Gesheva K.A., Gogova D.S., Beshkov G.D., Popov V., “Preparation of WSI2 by rapid thermal annealing of CVD thin films of tungsten”, Vacuum, 51 (2), (1998) pp. 181-184
391. Wu, G.-M., Wu, C.-Y., “Crystallization of silicon thin films by current-induced joule heating using a tungsten overcoat”, Crystal Research and Technology, 42 (12) (2007), pp. 1271-1275.
392. Godbole, M., “Silicon to tungsten ratio determination in tungsten silicide using XRF“,

Biennial University/Government/Industry Microelectronics Symposium - Proceedings, pp. 46-50, 2001.
393. Lai, K.K., Lamb, H.H., “Tungsten chemical vapor deposition using tungsten hexacarbonyl: microstructure of as-deposited and annealed films”, Thin Solid Films, 370 (1), 2000 pp. 114-121.
68. Beshkov G., Dimitrov D.B., Koprinarova J., Gesheva K. Properties of palladium silicide thin films obtained by vacuum rapid thermal annealing of r.f. sputtered Pd films on Si, 1998, Vacuum, 51(2),pp.177-180.

394. Mirowski, E., Leone, S.R., Enhancement in the crystalline quality of palladium silicide films: Multiple versus single deposition, Journal of Crystal Growth 219 (4), (2000) pp. 368-378.



69. Beshkov G.D., Dimitrov D.B., Lazarova V., Koprinarova J., Gesheva K., Vlaev E., (1997) Journal of Materials Research, 12 (10), pp. 2511-2514.

395. Zhang, X.-W., Han, G.-R.,Microstructure and conductivity of large area anocrystalline silicon films grown by specially designed thermal-assisted chemical vapor deposition“, Thin Solid Films 415 (1-2), (2002) pp. 5-9.


70. Gesheva K., Cziraki A., Ivanova T., Szekeres A. “Thermally induced structural transformations in CVD transition metal oxide thin films”, (2005) Journal of Optoelectronics and Advanced Materials, 7 (1), pp. 557-560.
396. Viespe C, Grigoriu C, Popescua M, et al. Crystallization of PLD deposited ITO thin films by thermal treating in various gaseous environments, Journal of Optoelectronics and Advanced Materials 9 (11) (2007) 3563-3566.
397. Yang B, Zhang YJ, Drabarek E, et al. Enhanced photoelectrochemical activity of sol-gel tungsten trioxide films through textural control 
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398. Rakhshani, A.E., „Boron-doped ZnO films grown by successive chemical solution deposition”,

Journal of Physics D: Applied Physics 41 (1), art. no. 015305, 2008-05-10

71. K. Gesheva, A. Sziraki, T. Ivanova, A. Scekeres, ”Structure and composition of thermally annealed Mo- and W-based CVD metal oxide thin films“, Thin Solid Films 492 (2005) 322-326.

399. Ashraf, S., Blackman, C.S., Hyett, G., Parkin, I.P. “Aerosol assisted chemical vapour deposition of MoO3 and MoO2 thin films on glass from molybdenum polyoxometallate precursors; Thermophoresis and gas phase nanoparticle formation”, Journal of Materials Chemistry 16 (35) (2006), pp. 3575-3582.


400. Kondrachova, L., Hahn, B.P., Vijayaraghavan, G., Williams, R.D., Stevenson, K.J. “Cathodic electrodeposition of mixed molybdenum tungsten oxides from peroxo-polymolybdotungstate solutions”

Langmuir 22 (25) (2006), pp. 10490-10498

72. Gesheva K. A., Cziraki A., Ivanova T., Szekeres A.

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401. Dhanasankar, M., Purushothaman, K.K., Muralidharan, G., “Effect of tungsten on the electrochromic behaviour of sol-gel dip coated molybdenum oxide thin films”, Materials Research Bulletin, volume 45, issue 5, year 2010, pp. 542 – 545.


402. Chen, C., Tan, W., Wang, M.P., Li, Z., Lei, Q., Xia, F.Z, “The transverse elongation and fracture mechanism of the upset Mo and Mo-La2O3 bars”, 2010, Materials Science and Engineering A 527 (3), pp. 600-605.
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404. Lethy, K.J., Vinod Kumar, R., Potdar, S., Detty, A.P., Bahna, A.H., Mahadevan Pillai, V.P.Influence of post-deposition thermal annealing on the properties of pulsed laser deposited tungsten layers”, 2009, Physica Scripta 80 (1), art. no. 015703.


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