Autors: Arvizu, М.А., Triana, C.A., Stefanov, B. I., Granqvist, C.G., Niklasson, G.A.
Title: Electrochromism in sputter-deposited W–Ti oxide films: Durability enhancement due to Ti
Keywords: Electrochromism, Thin films, Tungsten trioxide, Titanium dio

Abstract: Thin films of W–Ti oxide were prepared by reactive DC magnetron sputtering and were characterized by Rutherford backscattering spectrometry, X-ray diffraction, scanning electron microscopy and atomic force microscopy. The electrochromic properties were studied by cyclic voltammetry in an electrolyte of lithium perchlorate in propylene carbonate and by optical transmittance measurements. The addition of Ti significantly promoted the amorphous nature of the films and stabilized their electrochemical cycling performance and dynamic range for electrochromism.

References

    Issue

    Solar Energy Materials and Solar Cells, vol. 125, pp. 184-189, 2014, Netherlands, Elsevier, ISSN 0927-0248

    Цитирания (Citation/s):
    1. Mjejri, I., Gaudon, M., Rougier, A. Mo addition for improved electrochromic properties of V 2 O 5 thick films (2019) Solar Energy Materials and Solar Cells, 198, pp. 19-25 - 2019 - в издания, индексирани в Scopus или Web of Science
    2. Hua, C., Yuan, G., Cheng, Z., Jiang, H., Xu, G., Liu, Y., Han, G. Building architecture of TiO 2 nanocrystals embedded in amorphous WO 3 films with improved electrochromic properties (2019) Electrochimica Acta, 309, pp. 354-361 - 2019 - в издания, индексирани в Scopus или Web of Science
    3. Zhao, Q., Fang, Y., Qiao, K., Wei, W., Yao, Y., Gao, Y. Printing of WO 3 /ITO nanocomposite electrochromic smart windows (2019) Solar Energy Materials and Solar Cells, 194, pp. 95-102 - 2019 - в издания, индексирани в Scopus или Web of Science
    4. Siol, S., Beall, C., Ott, N., Döbeli, M., González-Castaño, M., Wick-Joliat, R., Tilley, S.D., Jeurgens, L.P.H., Schmutz, P., Cancellieri, C. Anodizing of Self-Passivating W x Ti 1- x Precursors for W x Ti 1- x O n Oxide Alloys with Tailored Stability (2019) ACS Applied Materials and Interfaces, 11 (9), pp. 9510-9518 - 2019 - в издания, индексирани в Scopus или Web of Science
    5. Tang, C.-J., He, J.-L., Jaing, C.-C., Liang, C.-J., Chou, C.-H., Han, C.-Y., Tien, C.-L. An all-solid-state electrochromic device based on WO 3 -Nb 2 O 5 composite films prepared by fast-alternating bipolar-pulsed reactive magnetron sputtering (2019) Coatings, 9 (1), art. no. 9 - 2019 - в издания, индексирани в Scopus или Web of Science
    6. P.T.G., G., Shaiju, S.S., Remya, R., Deb, B. Hydrated tungsten oxide nanosheet electrodes for broadband electrochromism and energy storage (2018) Materials Today Energy, 10, pp. 380-387 - 2018 - в издания, индексирани в Scopus или Web of Science
    7. Chen, Y., Lu, Q., Gao, L., Zhang, X., Yang, C., Cai, W., Pang, G., Niu, H., Wang, W., Hou, Y., Zhang, Y. Synthesis and optoelectronic properties of novel alternate copolymers based on diketopyrrolopyrrole and triarylamine units spaced by flexible chain (2018) Journal of Electroanalytical Chemistry, 829, pp. 217-229 - 2018 - в издания, индексирани в Scopus или Web of Science
    8. Blanchard, F., Baloukas, B., Martinu, L. Highly durable electrochromic tungsten oxide thin films prepared by high rate bias-enhanced sputter deposition (2018) Applied Materials Today, 12, pp. 235-243 - 2018 - в издания, индексирани в Scopus или Web of Science
    9. Wu, W., Wang, M., Ma, J., Cao, Y., Deng, Y. Electrochromic Metal Oxides: Recent Progress and Prospect (2018) Advanced Electronic Materials, 4 (8), art. no. 1800185 - 2018 - в издания, индексирани в Scopus или Web of Science
    10. Callisti, M., Tichelaar, F.D., Polcar, T. In situ TEM observations on the structural evolution of a nanocrystalline W-Ti alloy at elevated temperatures (2018) Journal of Alloys and Compounds, 749, pp. 1000-1008 - 2018 - в издания, индексирани в Scopus или Web of Science
    11. Liu, Q., Chen, Q., Zhang, Q., Dong, G., Zhong, X., Xiao, Y., Delplancke-Ogletree, M.-P., Reniers, F., Diao, X. Dynamic behaviors of inorganic all-solid-state electrochromic device: Role of potential (2018) Electrochimica Acta, 269, pp. 617-623 - 2018 - в издания, индексирани в Scopus или Web of Science
    12. Lin, Y.-S., Tsai, T.-H., Chen, P.-C., Liao, M.-C., Lai, Y.-C. Flexible electrochromic tungsten/titanium mixed oxide films synthesized onto flexible polyethylene terephthalate/indium tin oxide substrates via low temperature plasma polymerization (2018) Thin Solid Films, 651, pp. 56-66 - 2018 - в издания, индексирани в Scopus или Web of Science
    13. Zhang, C., Zheng, C., Zhou, S., Shen, Y., Zuo, C. Enhanced electrochromic porous cobalt oxides nanowall electrodes: A new way for fast modulation of yellow-brown light (2017) Materials Research Bulletin, 89, pp. 204-209 - 2017 - в издания, индексирани в Scopus или Web of Science
    14. Peng, M.-D., Zhang, Y.-Z., Song, L.-X., Wu, L.-N., Zhang, Y.-L., Hu, X.-F. Electrochemical stability properties of titanium-doped WO3 electrochromic thin films (2017) Surface Engineering, 33 (4), pp. 305-309 - 2017 - в издания, индексирани в Scopus или Web of Science
    15. Peng, M.-D., Zhang, Y.-Z., Song, L.-X., Yin, X.-F., Wang, P.-P., Wu, L.-N., Hu, X.-F. Structure and Electrochromic Properties of Titanium-doped WO3 Thin Film by Sputtering (2017) Wuji Cailiao Xuebao/Journal of Inorganic Materials, 32 (3), pp. 287-292 - 2017 - в издания, индексирани в Scopus или Web of Science
    16. Amarsingh Bhabu, K., Kalpana Devi, A., Theerthagiri, J., Madhavan, J., Balu, T., Rajasekaran, T.R. Tungsten doped titanium dioxide as a photoanode for dye sensitized solar cells (2017) Journal of Materials Science: Materials in Electronics, 28 (4), pp. 3428-3439 - 2017 - в издания, индексирани в Scopus или Web of Science
    17. Zhan, Y., Tan, M.R.J., Cheng, X., Tan, W.M.A., Cai, G.F., Chen, J.W., Kumar, V., Magdassi, S., Lee, P.S. Ti-Doped WO 3 synthesized by a facile wet bath method for improved electrochromism (2017) Journal of Materials Chemistry C, 5 (38), pp. 9995-10000 - 2017 - в издания, индексирани в Scopus или Web of Science
    18. Zhou, D., Xie, D., Xia, X., Wang, X., Gu, C., Tu, J. All-solid-state electrochromic devices based on WO3||NiO films: material developments and future applications (2017) Science China Chemistry, 60 (1), pp. 3-12 - 2017 - в издания, индексирани в Scopus или Web of Science
    19. Dubey, P., Lopez, G.A., Martinez, G., Ramana, C.V. Enhanced mechanical properties of W1−yMoyO3 nanocomposite thin films (2016) Journal of Applied Physics, 120 (24), art. no. 245103 - 2016 - в издания, индексирани в Scopus или Web of Science
    20. Xia, X., Ku, Z., Zhou, D., Zhong, Y., Zhang, Y., Wang, Y., Huang, M.J., Tu, J., Fan, H.J. Perovskite solar cell powered electrochromic batteries for smart windows (2016) Materials Horizons, 3 (6), pp. 588-595 - 2016 - в издания, индексирани в Scopus или Web of Science
    21. Park, S.-I., Quan, Y.-J., Kim, S.-H., Kim, H., Kim, S., Chun, D.-M., Lee, C.S., Taya, M., Chu, W.-S., Ahn, S.-H. A review on fabrication processes for electrochromic devices (2016) International Journal of Precision Engineering and Manufacturing - Green Technology, 3 (4), pp. 397-421 - 2016 - в издания, индексирани в Scopus или Web of Science
    22. Dong, D., Wang, W., Dong, G., Zhang, F., Yu, H., He, Y., Diao, X. Improved performance of co-sputtered Ni-Ti oxide films for all-solid-state electrochromic devices (2016) RSC Advances, 6 (112), pp. 111148-111160 - 2016 - в издания, индексирани в Scopus или Web of Science
    23. Karuppasamy, A. Electrochromism and photocatalysis in dendrite structured Ti:WO3 thin films grown by sputtering (2015) Applied Surface Science, 359, pp. 841-846 - 2015 - в издания, индексирани в Scopus или Web of Science
    24. Yang, W., Wang, J., Xu, D., Li, J., Chen, T. Characterization and formation mechanism of grey micro-arc oxidation coatings on magnesium alloy (2015) Surface and Coatings Technology, 283, pp. 281-285 - 2015 - в издания, индексирани в Scopus или Web of Science
    25. Vargas, M., Lopez, D.M., Murphy, N.R., Grant, J.T., Ramana, C.V. Effect of W-Ti target composition on the surface chemistry and electronic structure of WO 3 -TiO 2 films made by reactive sputtering (2015) Applied Surface Science, 353, pp. 728-734 - 2015 - в издания, индексирани в Scopus или Web of Science
    26. Li, C., Hsieh, J.H., Hung, M.-T., Huang, B.Q. The deposition and microstructure of amorphous tungsten oxide films by sputtering (2015) Vacuum, 118, pp. 125-132 - 2015 - в издания, индексирани в Scopus или Web of Science
    27. Acosta, D.R., Magaña, C., Hernández, F., Ortega, J. Electrical, optical and electrochromic properties of Ti:WO3 thin films deposited by the pulsed chemical spray technique (2015) Thin Solid Films, 594, pp. 207-214 - 2015 - в издания, индексирани в Scopus или Web of Science
    28. Murphy, N.R., Sun, L., Jones, J.G., Grant, J.T. Hybrid co-deposition of mixed-valent molybdenum-germanium oxides (MoxGeyOz): A route to tunable optical transmission (2015) Thin Solid Films, 590, pp. 248-259 - 2015 - в издания, индексирани в Scopus или Web of Science
    29. Brusa, E., Delprete, C., Razavykia, A. Systematic tailoring of functional properties of glass material in protective mask for smart manufacturing (2019) ISSE 2019 - 5th IEEE International Symposium on Systems Engineering, Proceedings, art. no. 8984513 - 2019 - в издания, индексирани в Scopus или Web of Science
    30. Inamdar, A.I., Chavan, H.S., Kim, H., Im, H. Mesoporous Ni-PANI composite electrode for electrochromic energy storage applications (2019) Solar Energy Materials and Solar Cells, 201, art. no. 110121 - 2019 - в издания, индексирани в Scopus или Web of Science
    31. Qu, H.-Y., Rojas-González, E.A., Granqvist, C.G., Niklasson, G.A. Potentiostatically pretreated electrochromic tungsten oxide films with enhanced durability: Electrochemical processes at interfaces of indium–tin oxide (2019) Thin Solid Films, 682, pp. 163-168. - 2019 - в издания, индексирани в Scopus или Web of Science
    32. Sorar, I., Rojas-González, E.A., Pehlivan, I.B., Granqvist, C.G., Niklasson, G.A. Electrochromism of W–Ti oxide thin films: Cycling durability, potentiostatic rejuvenation, and modelling of electrochemical degradation (2019) Journal of the Electrochemical Society, 166 (15), pp. H795-H801 - 2019 - в издания, индексирани в Scopus или Web of Science
    33. Nguyen, T.D., Yeo, L.P., Mandler, D., Magdassi, S., Yoong Tok, A.I. Electrodeposition of amorphous WO3 on SnO2-TiO2 inverse opal nano-framework for highly transparent, effective and stable electrochromic smart window (2019) RSC Advances, 9 (29), pp. 16730-16737 - 2019 - в издания, индексирани в Scopus или Web of Science
    34. Appiah, W.A., Dzakpasu, C.B., Lee, H., Lee, H., Lee, Y.M. Effect of electrolyte concentration on electrochromic performance of sputtered tungsten oxide film: Experiments and simulation (2021) Electrochimica Acta, 369, art. no. 137699, . - 2021 - в издания, индексирани в Scopus или Web of Science
    35. Marciel, A., Graça, M., Bastos, A., Pereira, L., Kumar, J.S., Borges, J., Vaz, F., Peres, M., Magalhães, S., Lorenz, K., Silva, R. Molybdenum oxide thin films grown on flexible ito-coated pet substrates (2021) Materials, 14 (4), art. no. 821, pp. 1-20. - 2021 - в издания, индексирани в Scopus или Web of Science
    36. Mehmood, A., Haidry, A.A., Long, X., Zhang, X. Influence of applied voltage on optimal performance and durability of tungsten and vanadium oxide co-sputtered thin films for electrochromic applications (2021) Applied Surface Science, 536, art. no. 147873 - 2021 - в издания, индексирани в Scopus или Web of Science
    37. Goei, R., Ong, A.J., Hao, T.J., Yi, L.J., Kuang, L.S., Mandler, D., Magdassi, S., Yoong Tok, A.I. Novel Nd–Mo co-doped SnO2/α-WO3 electrochromic materials (ECs) for enhanced smart window performance (2021) Ceramics International - 2021 - в издания, индексирани в Scopus или Web of Science
    38. Nguyen, T.D., Yeo, L.P., Ong, A.J., Zhiwei, W., Mandler, D., Magdassi, S., Tok, A.I.Y. Electrochromic smart glass coating on functional nano-frameworks for effective building energy conservation (2020) Materials Today Energy, 18, art. no. 100496 - 2020 - в издания, индексирани в Scopus или Web of Science
    39. Mehmood, A., Long, X., Haidry, A.A., Zhang, X. Trends in sputter deposited tungsten oxide structures for electrochromic applications: A review (2020) Ceramics International, 46 (15), pp. 23295-23313. - 2020 - в издания, индексирани в Scopus или Web of Science
    40. Yang, S.-H., Kuo, C.-F., Yang, J.-H. Rapid switching of composite electrode prepared with a hierarchical organic-inorganic p-n heterojunction and a nanorock layer (2020) Journal of Alloys and Compounds, 827, art. no. 154387 - 2020 - в издания, индексирани в Scopus или Web of Science
    41. Siol, S., Ott, N., Beall, C., Stiefel, M., Unutulmazsoy, Y., Döbeli, M., Tilley, S.D., Schmutz, P., Jeurgens, L.P.H., Cancellieri, C. A combinatorial guide to phase formation and surface passivation of tungsten titanium oxide prepared by thermal oxidation (2020) Acta Materialia, 186, pp. 95-104. - 2020 - в издания, индексирани в Scopus или Web of Science
    42. Tang, X., Chen, G., Liao, H., Li, Z., Zhang, J., Luo, J. Unveiling mechanical degradation for a monolithic electrochromic device: Glass/ITO/WO3/LiClO4 (PEO)/TiO2/ITO/glass (2020) Electrochimica Acta, 329, art. no. 135182 - 2020 - в издания, индексирани в Scopus или Web of Science
    43. Zhou, K., Wang, H., Liu, J. Coloration and ion insertion kinetics study in electrochromic WO3 films by chronoamperometry (2020) International Journal of Electrochemical Science, 15, pp. 7821-7832. - 2020 - в издания, индексирани в Scopus или Web of Science
    44. Takayanagi, M., Tsuchiya, T., Ueda, S., Higuchi, T., Terabe, K. In situ hard X-ray photoelectron spectroscopy on the origin of irreversibility in electrochromic LixWO3 thin films (2021) Applied Surface Science, 568, art. no. 150898 - 2021 - в издания, индексирани в Scopus или Web of Science
    45. Liu, Y., Wang, Y., Wang, C., Liu, K., Cheng, C., Lu, W., Huang, H. Improvement on synaptic properties of WOx-based memristor by doping Ti into WOx (2021) Journal of Physics D: Applied Physics, 54 (45), art. no. 455107 - 2021 - в издания, индексирани в Scopus или Web of Science
    46. Goei, R., Ong, A.J., Tan, J.H., Loke, J.Y., Lua, S.K., Mandler, D., Magdassi, S., Yoong Tok, A.I. Nd-Nb Co-doped SnO2/α-WO3Electrochromic Materials: Enhanced Stability and Switching Properties (2021) ACS Omega, 6 (40), pp. 26251-26261. - 2021 - в издания, индексирани в Scopus или Web of Science
    47. Mengying, W., Hang, Y., Xu, W., Xungang, D. High-performance of quasi-solid-state complementary electrochromic devices based on Al3+/Li+ dual-ion electrolyte (2021) Solar Energy Materials and Solar Cells, 230, art. no. 111196 - 2021 - в издания, индексирани в Scopus или Web of Science
    48. Evans, R.C., Austin, R., Miller, R.C., Preston, A., Nilsson, Z.N., Ma, K., Sambur, J.B. Surface-Facet-Dependent Electrochromic Properties of WO3 Nanorod Thin Films: Implications for Smart Windows (2021) ACS Applied Nano Materials, 4 (4), pp. 3750-3759. - 2021 - в издания, индексирани в Scopus или Web of Science
    49. Atak, G., Bayrak Pehlivan, İ., Montero, J., Granqvist, C.G., Niklasson, G.A. Electrochromic tungsten oxide films prepared by sputtering: Optimizing cycling durability by judicious choice of deposition parameters (2021) Electrochimica Acta, 367, art. no. 137233 - 2021 - в издания, индексирани в Scopus или Web of Science
    50. Cai, G., Zhu, R., Liu, S., Wang, J., Wei, C., Griffith, K.J., Jia, Y., Lee, P.S. Tunable Intracrystal Cavity in Tungsten Bronze-Like Bimetallic Oxides for Electrochromic Energy Storage (2021) Advanced Energy Materials - 2021 - в издания, индексирани в Scopus или Web of Science
    51. Pandu Ranga Rao, K., Chitti Babu, V., Kumar, V.R., Veeraiah, N. Characterization and coloration efficiency studies using cyclicvoltammetry and chronocoulometric methods on TiO2 doped WO3 nanocrystalline thin films (2022) Optik, 249, art. no. 168282 - 2022 - в издания, индексирани в Scopus или Web of Science
    52. Gordillo, O., Hincapie, W., Piamba, O., Olaya, J., Trava-Airoldi, V. Study of Adhesive Wear Test on TiSi, AlTi, and WTi Coatings (2022) Coatings, 12 (10), art. no. 1370. - 2022 - в издания, индексирани в Scopus или Web of Science
    53. Pat, S., Mohammadigharehbagh, R., Ozgur, N.A., Oztetik, B., Korkmaz, S. Deep understanding in physical and electrochemical performance of WO3–TiO2 nanocomposite thin films deposited onto ITO and FTO coated glass substrates using a thermionic vacuum arc deposition system (2022) Physica B: Condensed Matter, 640, art. no. 414093. - 2022 - в издания, индексирани в Scopus или Web of Science
    54. Park, H.S., Park, S., Song, S.H., Dao, T.T., Tran, H.V., Lee, S.I., Han, C.-H., Cho, C.H., Hong, S. Effects of Ti-doping amount and annealing temperature on electrochromic performance of sol-gel derived WO3 (2022) RSC Advances, 12 (27), pp. 17401-17409. - 2022 - в издания, индексирани в Scopus или Web of Science
    55. Zeng, Y., Tang, Y., Li, G., Cheng, Z., Liu, Y., & Han, G. (2021). Li-Ion-Trapping-Induced Degradation Mechanism of Colored State in Tungsten Oxide Electrochromic Films. Journal of The Electrochemical Society, 168(12), 126507. - 2021 - в издания, индексирани в Scopus или Web of Science
    56. Zhou, K., Wang, H., Liu, J., & Yan, H. (2018). The mechanism of trapped ions eroding the electrochromic performances of WO3 thin films. Int. J. Electrochem. Sci., 13(8), 7335-7346. - 2018 - в издания, индексирани в Scopus или Web of Science
    57. Reddy G V, A., Naveen Kumar, K., Sattar, S.A., Shetty, H.D., Guru Prakash, N., Imran Jafri, R., Devaraja, C., B C, M., C S, K., Premkumar, R., Ansar, S. Effect of post annealing on DC magnetron sputtered tungsten oxide (WO3) thin films for smartwindow applications (2023) Physica B: Condensed Matter, 664, art. no. 414996 - 2023 - в издания, индексирани в Scopus или Web of Science
    58. Pandurangarao, K., Chitti Babu, V., Ravi Kumar, V. Synthesis and characterization of Ti-WO3 films for electrochromic applications (2023) Optical Materials, 136, art. no. 113381 - 2023 - в издания, индексирани в Scopus или Web of Science
    59. Ke, Y., Wang, Z., Xie, H., Khalifa, M.A., Zheng, J., Xu, C. Long-Term Stable Complementary Electrochromic Device Based on WO3 Working Electrode and NiO-Pt Counter Electrode (2023) Membranes, 13 (6), art. no. 601 - 2023 - в издания, индексирани в Scopus или Web of Science
    60. Wu, Y., Mishra, Y.K., Xiong, J. Electrochromic materials: Scope for the cyclic decay mechanisms and performance stability optimisation strategies (2023) Coloration Technology https://doi.org/10.1111/cote.12729. - 2023 - в издания, индексирани в Scopus или Web of Science
    61. Primiceri, V., Pugliese, M., Giannuzzi, R., Esposito, M., Gigli, G., Maiorano, V., Cossari, P. Enhanced Durability of an All-Solid-State WO3 Based Electrochromic Device on a Single Substrate by Using a Complementary Anodically Coloring Poly(o-ethoxyaniline) (2023) ACS Applied Electronic Materials, 5 (10), pp. 5735-5748. - 2023 - в издания, индексирани в Scopus или Web of Science
    62. Chen, L., Zhu, X., Liu, Y., Yang, L., Su, J., He, Z., Tang, B. Electrochromic properties of Ni or Ti single-doped and Ni-Ag or Ti-Ag binary-doped WO3 thin films (2024) Electrochimica Acta, 475, art. no. 143644 - 2024 - в издания, индексирани в Scopus или Web of Science
    63. Zhong, J., Huang, B., Song, J., Zhang, X., Du, L., Gao, Y., Liu, W., Kang, L. Stable WO3 electrochromic system based on NH4+ hydrogen bond chemistry (2024) Chemical Engineering Journal, 480, art. no. 148098 - 2024 - в издания, индексирани в Scopus или Web of Science
    64. Guo, Z., Wang, S., Chen, K., Mao, J., Diao, X. Investigation on the Properties and Mechanism of W-Doped TiO2 Electrochromic Films Deposited by Cosputtering (2023) ACS Applied Electronic Materials, 5 (12), pp. 6778-6786. - 2023 - в издания, индексирани в Scopus или Web of Science
    65. Kitsopoulou, A., Bellos, E., Tzivanidis, C. An Up-to-Date Review of Passive Building Envelope Technologies for Sustainable Design (2024) Energies, 17 (16), art. no. 4039 - 2024 - в издания, индексирани в Scopus или Web of Science
    66. Wu, Y., Mishra, Y.K., Xiong, J. Electrochromic materials: Scope for the cyclic decay mechanisms and performance stability optimisation strategies (2024) Coloration Technology, 140 (2), pp. 208-229. - 2024 - в издания, индексирани в Scopus или Web of Science

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