Централна лаборатория по слънчева енергия и нови енергийни източници Българска академия на науките



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74. Harizanov O. A., Gesheva K. A., Stefchev P. L. Sol-gel and CVD-metal oxide coatings for solar energy utilization1996) Ceramics International, 22 (2), pp. 91-94

412. .Jiang, W., Wang, Y., Gu, L., „Influence of TiO2 film on photo-catalytic property of enamels“, Journal of Non-Crystalline Solids 353 (44-46) (2007) pp. 4191-4194.


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Study of the surface roughness of CVD-tungsten oxide thin films

(2003) Applied Surface Science, 218 (1-4), pp. 162-168.
414. Preparation and characterization of highly ordered WO3 nanorod arrays, Zheng, H.-J., Wang, X.-D., Gu, Z.-H., 2009 Wuli Huaxue Xuebao/ Acta Physico - Chimica Sinica 25 (8), pp. 1650-1654.
415. WO3-Fe2O3 photoanodes for water splitting: A host scaffold, guest absorber approach, Sivula, K., Formal, F.L., Grätzel, M. 2009 Chemistry of Materials 21 (13), pp. 2862-2867.

76. K. Gesheva, T. Ivanova, “A Low Temperature Atmospheric Pressure CVD Process for Growing Thin Films of MoO3 and MoO3 – WO3 for Electrochromic Device Applications”, Chemical Vapor Deposition 12 (4) (2006) 231-239
416. 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”, TMS Annual Meeting 3, pp. 27-32, 2009.
417. Optical properties of molybdenum oxide thin films deposited by chemical vapor transport of MoO3(OH)2, Lee, Y.J., Seo, Y.I., Kim, S.-H., Kim, D.-G., Kim, Y.D., 2009 Applied Physics A: Materials Science and Processing 97 (1), pp. 237-241.
418. Chemical vapour transport synthesis and optical characterization of MoO3 thin films, Lee, Y.J., Nichols, W.T., Kim, D.-G., Kim, Y.D., 2009 Journal of Physics D: Applied Physics 42 (11), art. no. 115419.
419. Deposition of Mo oxide and metallic Mo films by chemical vapor transport of MoO3 (OH)2

Lee, Y.J., Seo, Y.I., Kim, S.H., Kim, D.-G., Kim, Y.D., 2009 Chemical Vapor Deposition 15 (7-9), pp. 199-203.


420. 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.
421. Granqvist, C.G., “Transparent conductors as solar energy materials: A panoramic review”

Solar Energy Materials and Solar Cells 91 (2007), pp. 1529-1598
422. 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), pp. 3022-3033.
423. Lee, Y.J., Nichols, W.T., Kim, D.-G., Kim, Y.D. “Chemical vapour transport synthesis and optical characterization of MoO3 thin films”, 2009 Journal of Physics D: Applied Physics 42 (11), art. no. 115419 0

424. 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 0

425. 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), pp. 3022-3033, 2008.
426. 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.
427. Granqvist, C.G., “Transparent conductors as solar energy materials: A panoramic review”

Solar Energy Materials and Solar Cells 91 (2007), pp. 1529-1598.


428. Funken, K.-H., Sattler, C., Milow, B., De Oliveira, L., Blanco, J., Fernández, P., Malato, S., (...), De Oliveira, J.C. , ”A comparison of prototype compound parabolic collector-reactors (CPC) on the road to SOLARDETOX technology”, Water Science and Technology 44 (5), (2001) pp. 271-278

429. Balázsi, C., Pfeifer, J. ,”Long-term behaviour of tungsten oxide hydrate gels in an alkali containing aqueous environment”, Solar Energy Materials and Solar Cells, 76 (4), (2003) pp. 577- 590.



77. Gogova D., Stoyanov G., Gesheva K. A., Optimization of the growth rate of electrochromic WO3 coatings, in-situ grown by chemical vapor deposition at atmospheric pressure, 1996, Renewable Energy, 8(1-4),pp.546-550.

430. Monk, P.M.S., “Charge movement through electrochromic thin-film tungsten trioxide, Critical Reviews in Solid State and Materials Sciences 24 (3), (1999) pp. 193-226



79. K. A. Gesheva, T. Ivanova, A. Iosifova, D. Gogova, R. Porat,

Deposition and Characterisation of CVD - MoO3 Thin Films”,



J. de Physique IV France 9 (1999) Pr 8-453 – Pr8-459.
431. Wahl G, Arndt J, Stabel O, “Chemical vapor deposition of superconductor and oxide films“, Chemical Physics оf Thin Film Deposition Processes фor Micro- аnd Nano- Technologies , NАТО Science Series, Series II: Mathematics, Physics and Chemistry, Vol. 55, pp. 145-170, 2002, Ed. By Y. Pauleau, Conference of the NATO-Advanced-Study-Institute on Chemical Physics of Thin Film Deposition Processes for Micro- and Nano-Technologies, Kaunas, Lithuania, Sep 03-14, 2001.

80. Gesheva K. A., Ivanova T., Marsen B., Cole B., Miller E. L., Hamelmann F.

Structural and surface analysis of Mo-W oxide films prepared by atmospheric pressure chemical vapor deposition, (2007) Surface and Coatings Technology, 201 (22-23 SPEC. ISS.), pp. 9378-9384.
432. Uthanna, S., Nirupama, V., Pierson, J.F., Substrate temperature influenced structural, electrical and optical properties of dcmagnetron sputtered MoO3 films,Applied Surface Science,volume 256, issue 10, year 2010, pp. 3133 - 3137
433. Sun, X., Chen, A., Zhang, H., Cao, H. Optical and electrochromic properties of sol-gel deposited mixed MoO 3-WO3 thin films”, 2009 Advanced Materials Research 79-82, pp. 843-846.

434. Fan, Y., Tang, W., Weng, X., Deng, L. ,“Electrochromic Properties of WOx-Mo thin films on polyethylene terephthalates soft substrate”, 2009 Xiyou Jinshu Cailiao Yu Gongcheng/Rare Metal Materials and Engineering 38 (9), pp. 1570-1574


435. Deposition of Mo oxide and metallic Mo films by chemical vapor transport of MoO3(OH)2,

Lee, Y.J., Seo, Y.I., Kim, S.H., Kim, D.-G., Kim, Y.D., Chemical Vapor Deposition 15 (7-9), pp. 199-203, 2009.


436. Shen, Y., Zhu, H., Huang, R., Zhao, L., Yan, S., “Synthesis and photochromic properties of WO3 powder induced by oxalic acid”, Science in China, Series B: Chemistry 52 (5), pp. 609-614, 2009.
437. Shen, Y., Yan, M.-Y., Zhao, L., Yan, S.-N., Li, Z., “Influence of pH on structure and photochromic properties of WO3 nano-powders”, Gongneng Cailiao/Journal of Functional Materials 40 (5), pp. 732-734+738, 2009.
438. Yang, L.-H., Li, J.-Q., Yu, X., Zhang, M.-L., “Molybdate conversion coatings on AZ31 magnesium alloy”, Zhongguo Youse Jinshu Xuebao/Chinese J. Nonferrous Metals 18 (7) (2008), 1211-1215.
439. Ashkarran, A.A., Iraji Zad, A., Ahadian, M.M., Mahdavi Ardakani, S. A., “Synthesis and photocatalytic activity of WO3 nanoparticles prepared by the arc discharge method in deionized water”, Nanotechnology 19 (19) (2008), art. no. 195709.
440. Sungthong, A., Porntheeraphat, S., Poyai, A., Nukeaw, J., “An extreme change in structural and optical properties of indium oxynitride deposited by reactive gas-timing RF magnetron sputtering”, Applied Surface Science 254 (23), pp. 7950-7954, 2008.
441. Sivula, K., Formal, F.L., Grätzel, M.,” WO3-Fe2O3 photoanodes for water splitting: A host scaffold, guest absorber approach”, Chemistry of Materials 21 (13), pp. 2862-2867, 2009.

Ivanova T., Gesheva K.A., Kalitzova M., Marsen B., Cole B., Miller E.L.

Electrochromic behavior of Mo/W oxides related to their surface morphology and intercalation process parameters

(2007) Materials Science and Engineering B: Solid-State Materials for Advanced Technology, 142 (2-3), pp. 126-134.

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


443. Electrochromic performance of PECVD-synthesized WOxCy thin films on flexible PET/ITO substrates for flexible electrochromic devices

Lin, Y.-S., Chen, H.-T., Lai, J.-Y. 2009 Thin Solid Films 518 (5), pp. 1377-1381.



Ivanova T., Gesheva K.A., Sharlandjiev P., Koserkova-Georgieva A.

Technology and optoelectronic properties of APCVD Cr2O3 and Mo-Cr mixed oxide thin films

(2007) Surface and Coatings Technology, 201 (22-23 SPEC. ISS.), pp. 9313-9318.

444. Li, S., Li, F.-L., Zhou, S.-M., Wang, P., Cheng, K., Du, Z.-L , “Highly sensitive room-temperature gas sensors based on hydrothermal synthesis of Cr2O3 hollow nanospheres”, 2009, Chinese Physics B 18 (9), pp. 3985-3989.


Около 444 цитата в международни научни списания, от които


130 цитата за периода 2008-2009г.
83 цитата през 2009. Цитирания има в книги, монографии.
22 цитирания в работи, излезли през 2010г.

Има 10 публикации с повече от 10 цитати: 1- 51; 1-35; 1-32; 1-24; 1-23; 1-17; 1-16; 1-14; 1-11; 4 - 10; 1 - 9 и множество с по 6 - 7 цитата. Цитатите са в международни научни списания, има и в книги и монографии.


Още около 12 цитата за 2010-04-29, общо 456 цитати. Отдолу даденият списък е за цитиранията за 2010, взети от Scopus.


Април 29, 2010

Цитати 2010: 22 (10 от тях са отчетени в списъка, 12 са нови, неотразени в списъка). Тези 12 са тук по-долу:


Dhanasankar, M., Purushothaman, K.K., Muralidharan, G., “Effect of tungsten on the electrochromic behaviour of sol-gel dip coated molybdenum oxide thin films”, 2010, MaterialsResearcBulleti, 45(5), 542-545.
Buono-Core, C.G.E., Cabello, G., Klahn, A.H., Lucero, A., Nuñez, M.V., Torrejón, B., Castillo, “Growth and characterization of molybdenum oxide thin films prepared by photochemical metal-organic deposition (PMOD)”, 2010, Polyhedron 29 (6), pp. 1551-1554.
Lee, Y.J., Park, C.W., Kim, D.-G., Nichols, W.T., Oh, S.-T., Kim, Y.D.

“MoO3 thin film synthesis by chemical vapor transport of volatile MoO3(OH)2 , 2010, Journal of Ceramic Processing Research 11 (1), pp. 52-55.


Reddy, K.M., Rao, T.N., Radha, K., Joardar, J.Nanostructured tungsten carbides by thermochemical processing, 2010, Journal of Alloys and Compounds, 494 (1-2), pp. 404-409.
Gas sensing properties of thermally evaporated lamellar MoO3, Rahmani, M.B., Keshmiri, S.H., Yu, J., Sadek, A.Z., Al-Mashat, L., Moafi, A., Latham, K., (...), Kalantar-zadeh, K. , Sensors and Actuators, B: Chemical 145 (1), pp. 13-192010.
Itoh, T., Matsubara, I., Shin, W., Izu, N., Nishibori, M., “XPS study of organic/MoO3 hybrid thin films for aldehyde gas sensors: correlation between average Mo valence and sensitivity ,

Nippon Seramikkusu Kyokai Gakujutsu Ronbunshi/Journal of the Ceramic Society of Japan 118 (1375), pp. 171-174.
Al-Kuhaili, M.F., Durrani, S.M.A., Bakhtiari, I.A.,Pulsed laser deposition of molybdenum oxide thin films , Applied Physics A: Materials Science and Processing 98 (3), pp. 609-615

Uthanna, S., Nirupama, V., Pierson, J.F., “Substrate temperature influenced structural, electrical and optical properties of dc magnetron sputtered MoO3 films”, 2010, Applied Surface Science 256 (10), pp. 3133-3137

.

Zhao, B., Chou, C.-J., Chen, Y.-W., “Hydrogenation of p-chloronitrobenzene on tungsten-modified NiCoB catalyst “, 2010, Industrial and Engineering Chemistry Research 49 (4), pp. 1669-1676.
Dhanasankar, M., Purushothaman, K.K., Muralidharan, G., “Optical, structural and electrochromic studies of molybdenum oxide thin films with nanorod structure”, 2010, Solid State Sciences 12 (2), pp. 246-251.
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.
Naseri, N., Azimirad, R., Akhavan, O., Moshfegh, A.Z., “Improved electrochromical properties of sol-gel WO3 thin films by doping gold nanocrystals”, 2010, Thin Solid Films 518 (8), pp. 2250-2257.
T. Chen, C., Tan, W., Wang, M.P., Li, Z., Lei, Q., Xia, F.Z.,”Тhe 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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