References: |
-
P. Joshi, Y. Xie, M. Ropp, D. Galipeau, S. Bailey and Q. Qiao, “Dye-sensitized solar cells based on low cost nanoscale carbon/TiO2 composite counter electrode”, Energy & Environmental Science, 2(4), pp 333–440, 2009
-
Z. Arifin, S. Soeparman, D. Widhiyanuriyawan, B. Sutanto, Suyitno, “Performance Enhancement of Dye-Sensitized Solar Cells Using a Natural Sensitizer”, AIP Conference Proceedings, 1788(1), 2017
-
B. O’Regan, M. Grätzel, “A low-cost, high-efficiency solar cell based on dye-sensitized colloidal TiO2 films” Nature, 353(6346), pp 737–740, 1991.
-
J. Gong, J. Liang, K. Sumathy, “Review on dye-sensitized solar cells (DSSCs): Fundamental concepts and novel materials”, Renewable and Sustainable Energy Reviews, 16(8), pp 5848-5860, 2012.
-
J. Gong, K. Sumathy, Q. Qiao, Z. Zhou, “Review on dye-sensitized solar cells (DSSCs): Advanced techniques and research trends”, Renewable and Sustainable Energy Reviews, 68(P1), pp 234-246, 2017
-
A. Reynal, E. Palomares, “Ruthenium Polypyridyl Sensitisers in Dye Solar Cells Based on Mesoporous TiO2”, Ruthenium Polypyridyl Sensitisers in Dye Solar Cells Based on Mesoporous TiO2, 2011(29), pp 4509-4526, 2011.
-
R. Hemmatzadeh and A. Mohammadi, “Improving optical absorptivity of natural dyes for fabrication of efficient dye-sensitized solar cells”, Journal of Theoretical and Applied Physics, 7(1), 57, 2013.
-
C.-Pei Lee, C.-Ting Li, and K.-Chuan Ho, “Use of organic materials in dye-sensitized solar cells”, Materials Today, 20(5), pp 267-283, 2017
-
M. J. García-Salinas and M. J. Ariza, “Optimizing a Simple Natural Dye Production Method for Dye-Sensitized Solar Cells: Examples for Betalain (Bougainvillea and Beetroot Extracts) and Anthocyanin Dyes”, Applied Sciences, 9(12), 2515, 2019
-
S. Sreeja, B. Pesala, “Co-sensitization aided efciency enhancement in betanin–chlorophyll solar cell” Materials for Renewable and Sustainable Energy, 7(4), 25, 2018.
-
A. Kume, T. Akitsu, K. N. Nasahara, “Why is chlorophyll b only used in light-harvesting systems?”, Journal of Plant Research,131(6), pp 961-972, 2018.
-
N. Rajput, S. Ali, M. Naeem, M.A. Khan & T. Wang, “The effect of dietary supplementation with the natural carotenoids curcumin and lutein on pigmentation, oxidative stability and quality of meat from broiler chickens affected by a coccidiosis challenge”, British Poultry Science, 55(4), pp 501-509, 2014.
-
S. Shalini, R. Balasundaraprabhu, S. Prasanna, Tapas K. Mallick, S. Senthilarasu, “Review on natural dye sensitized solar cells: Operation, materials and methods”, Renewable and Sustainable Energy Reviews, 51(C), pp 1306-1325, 2015
-
N. Sawhney, A. Raghav, and S. Satapathi, “Utilization of Naturally Occurring Dyes as Sensitizers in Dye Sensitized Solar Cells”, IEEE Journal of Photovoltaics, 7(2), pp 539-544, 2017.
-
C. I. Oprea, A. Dumbrava, I. Enache, A. Georgescu, M. A. Gîrtu, “A combined experimental and theoretical study of natural betalain pigments used in dye-sensitized solar cells”, Journal of Photochemistry and Photobiology A: Chemistry, 240, pp 5-13, 2012
-
A. Dumbravă, I. Enache, C. I. Oprea, A. Georgescu, M. A. Gîrţuc, “Toward a more efficient utilisation of betalains as pigments for dye-sensitized solar cells”, Digest Journal of Nanomaterials and Biostructures, 7(1), pp 339-351, 2012.
-
T. Esatbeyoglu, A. E. Wagner, V. B. Schini-Kerth and G. Rimbach, “Betanin--a food colorant with biological activity”, Molecular Nutrition & Food Research, 59(1), pp 36-47, 2015
-
K. L. Singh, T. Karlo, and A. Pandey, “Begonia dye as an efficient anthocyanin sensitizer”, Journal of Renewable and Sustainable Energy, 5(4), 043115, 2013.
-
F. Kabir, M. M. H. Bhuiyan, M. S. Manir, M. S. Rahaman, M. A. Khan, T. Ikegami, “Development of dye-sensitized solar cell based on combination of natural dyes extracted from Malabar spinach and red spinach”, Results in Physics, 14, 102474, 2019
-
H. Chang, H. M. Wu, T. L. Chen, K. D. Huang, C. S. Jwo, Y. J. Lo, “Dye-sensitized solar cell using natural dyes extracted from spinach and ipomoea”, Journal of Alloys and Compounds, 495(2), pp 606-610, 2010
-
R. Syafinar, N. Gomesh, M. Irwanto, M. Fareq, Y. M. Irwan, “Chlorophyll Pigments as Nature Based Dye for Dye-Sensitized Solar Cell (DSSC)”, Energy Procedia, 79(2015), pp 896-902, 2015
-
H.-Je Kim , D.- Jo Kim, S. N. Karthick, K.V. Hemalatha, C. J. Raj, Sunseong ok, Youngsonchoe, “Curcumin Dye Extracted from Curcuma longa L. Used as Sensitizers for Efficient Dye-Sensitized Solar Cells”, International Journal of Electrochemical Science, 8(2013), pp 8320-8328, 2013.
-
W. Ghann, H. Kang, T. Sheikh, S. Yadav, T. Chavez-Gil, F. Nesbitt & J. Uddin, “Fabrication, Optimization and Characterization of Natural Dye Sensitized Solar Cell”, Scientific Reports, 7(2017), 41470, 2017
-
M. Hosseinnezhad, S. Moradian and K. Gharanjig, “Fruit extract dyes as photosensitizers in solar cells”, Current Science, 109(5), pp 953-956, 2015.
-
M. I. Gil, C. Garcia-Viguera, F. Artés and F. A. Tomás-Barberán, “Changes in Pomegranate Juice Pigmentation during Ripening”, Journal of the Science of Food and Agriculture, 68(1), pp 77-81, 1994
-
M. H. Bazargan, M. M. Byranvand, A. N. Kharat, L. Fatholahi, “Natural pomegranate juice as photosensitizers for dyesensitized solar cell (DSSC)”, Optoelectronics and Advanced Materials-Rapid Communications, 5(4), pp 360-362, 2011
-
G. Calogero, A. Bartolotta, G. D. Marco, A. D. Carlo and F. Bonaccorso, “Vegetable-based dye-sensitized solar cells”, Chemical Society Reviews, 44(10), pp 3244-3294, 2015
-
M. C. Henriette, Azeredo, “Betalains: properties, sources, applications, and stability – a review”, International Journal of Food Science and Technology, 44(12), pp 2365-2376, 2009
-
S. Kavitha, K. Praveena and M. Lakshmi, “A new method to evaluate the feasibility of a dye in DSSC application”, International Journal of Energy Research, 41(14), pp 2173-2183, 2017
-
K.-Jun Hwang, J.-Young Park, S. Jin, S. O. Kangc and D. W. Cho, “Light-penetration and light-scattering effects in dye-sensitised solar cells”, New Journal of Chemistry, 38(12), pp 6161-6167, 2014.
-
F. Kabir, M. M. H. Bhuiyan, M. R. Hossain, H. Bashar, M. S. Rahaman, M. S. Manir, S. M. Ullah, S. S. Uddin, M. Z. I. Mollah, R. A. Khan, S. Huqued, M. A. Khan, “Improvement of efficiency of Dye Sensitized Solar Cells by optimizing the combination ratio of Natural Red and Yellow dyes”, Optik - International Journal for Light and Electron Optics, 179, pp 252-258, 2019
-
T. A. Ruhane, M. T. Islam, M. S. Rahaman, M. M. H. Bhuiyan, J. M. M. Islam, M. K. Newaz, K. A. Khan, M. A. Khan, “Photo current enhancement of natural dye sensitized solar cell by optimizing dye extraction and its loading period”, Optik - International Journal for Light and Electron Optics, 149, pp 174-183, 2017
-
N. D. Johari, Z. M. Rosli, J. M. Juoi, S. A. Yazid, “Comparison on the TiO2 crystalline phases deposited via dip and spin coating using green sol–gel route”, Journal of Materials Research and Technology, 8(2), pp 2350-2358, 2019.
-
M. K. Hossain, M. F. Pervez, M. N. H. Mia, S. Tayyaba, M. J. Uddin, R. Ahamed, R. A. Khan, M. Hoq, M. A. Khan, F. Ahmed, “Annealing temperature effect on structural, morphological and optical parameters of mesoporous TiO2 film photoanode for dye-sensitized solar cell application”, Materials Science-Poland, 35(4), pp. 868-877, 2017
-
T. Luttrell, S. Helpegamage, J. Tao, A. Kramer, E. Sutter & M. Batzill, “Why is anatase a better photocatalyst than rutile? - Model studies on epitaxial TiO2 films”, Scientific Reports, 4(2014), 4043, 2014
-
G. Odling and N. Robertson, “Why is Anatase a Better Photocatalyst than Rutile? The Importance of Free Hydroxyl Radicals”, ChemSusChem, 8(11), pp 1838-1840, 2015.
-
L.-Chien Chen, C.-Chiang Chen, and B.-Shiang Tseng, “Improvement of Short-Circuit Current Density in Dye-Sensitized Solar Cells Using Sputtered Nanocolumnar TiO2 Compact Layer”, Journal of Nanomaterials 2010(6346), 374052, 2010
-
M.-S. Liang, Y.-K. Fong, C.-C. Khaw, C.-C. Liu, and S.-P. Chin, “Studies on the Effects of Crystallite Sizes and Scattering Layers on the Conversion Efficiency of Dye-Sensitized Solar Cell.” Journal of Power and Energy Engineering, 2, pp 18-24, 2014
-
N. N. Hafizah, M. Z. Musa, M. H. Mamat, M. Rusop, “Characterization of titanium dioxide nanopowder synthesized by sol gel grinding method.” Advanced Materials Research, 626, pp 425–9, 2013
-
N. Kutlu, “Investigation of electrical values of low-efficiency dye-sensitized solar cells (DSSCs)”, Energy, 199, 117222, 2020
-
F. Kabir, S. N. Sakib and N. Matin, “Stability study of natural green dye based DSSC”, Optik - International Journal for Light and Electron Optics, 181, pp 458-464, 2018
-
S. Ilić, V. Paunović, “Characteristics of Curcumin Dye used as a Sensitizer Iin Dye-Sensitized Solar Cells”, FactaUniversitatis, Series: Electronics and Energetics, 32(1), pp. 91-104, 2018.
-
W. Choawunklang, T. Ponken1a, W. Pinporg, S. Pawasay and T. Srisuma, “Synthesis of Natural Dye Sensitizer Local for Dye-sensitized Solar Cell (DSSC) Application” Journal of Science & Technology, pp 12-17, 2016.
-
E. Karim, J. Uddin, M. S. Rahman, M. O. Rahman and M. Khan, “Comparative Study on the Energy Conversion Efficiency of Dye Sensitized Solar Cell Using Different Natural Dyes”, International Journal of Thin Films Science and Technology, 6(2), pp 93-98, 2017.
|