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Interaction of YD2 and TiO2 in dye-sensitized solar cells (DSSCs): a density functional theory study. Absorption mechanism of dopamine/DOPAC-modified TiO2 nanoparticles by time-dependent density functional theory calculations. Chemically modified titanium oxide nanostructures for dye-sensitized solar cells. 185 publications. II The absorption spectra of N719 sensitizer anchored on the films prepared by TiO 2 nanocrystals with different morphology and size were investigated for improving the performance of dye-sensitized solar cell (DSC). Song Guo, Na Liu, Wei Ding, Xiaoyan Pang, Zhiwen Ding, Yongfang Chen. endstream endobj startxref You’ve supercharged your research process with ACS and Mendeley! Highly efficient ZIF-8/graphene oxide derived N-doped carbon sheets as counter electrode for dye-sensitized solar cells. Lim, H. Ahmad, N.S.K. 2 starting from DFT + For permission to reproduce, republish and %PDF-1.6 %���� The UV data show that the absorption of N719 only occurs in the visible region (up to ca. Shyamal Das, Debasish Saha, Sourav Mardanya, Sujoy Baitalik. GW quasiparticle bandgaps of anatase TiO h�bbd```b``���@$S.�d+�ނe��H�� ��H2}�Y�zYn�I0y���n�S�f�e��E Mariachiara Pastore and Filippo De Angelis . Constructing hierarchical fastener-like spheres from anatase TiO2 nanosheets with exposed {001} facets for high-performance dye-sensitized solar cells. Joaquín Calbo, Mariachiara Pastore, Edoardo Mosconi, Enrique Ortí, Filippo De Angelis. Theoretical Study of Ultrafast Electron Injection into a Dye/TiO2 System in Dye-Sensitized Solar Cells. Mariachiara Pastore, Simona Fantacci, and Filippo De Angelis . Metal ion linked multilayers on mesoporous substrates: Energy/electron transfer, photon upconversion, and more. Electronic structure and optical properties calculation of Zn-porphyrin with N-annulated perylene adsorbed on TiO2 model for dye-sensitized solar cell applications: A DFT/TD-DFT study. Enhanced light scattering and photovoltaic performance for dye-sensitized solar cells by embedding submicron SiO2/TiO2 core/shell particles in photoanode. On the basis of our calculations it seems therefore that no sizable lower bound to an “injection time” exists, rather the timings of electron injection are mainly ruled by electron dephasing in the semiconductor. Citations are the number of other articles citing this article, calculated by Crossref and updated daily. You have to login with your ACS ID befor you can login with your Mendeley account. Maria Grazia Lobello, Filippo De Angelis, Simona Fantacci. A similarly strong coupling is calculated for the higher-lying transitions constituting the visible absorption band centered at ca. Electronic Structure and Optical Properties of Designed Photo-Efficient Indoline-Based Dye-Sensitizers with D–A−π–A Framework. Geometry of Molecular Motions in Dye Monolayers at Various Coverages. 3 (a). Perspectives on ab initio molecular simulation of excited-state properties of organic dye molecules in dye-sensitised solar cells. Ruangchai Tarsang, Vinich Promarak, Taweesak Sudyoadsuk, Supawadee Namuangruk, Nawee Kungwan, Pipat Khongpracha, Siriporn Jungsuttiwong. Structural and Optical Properties of Nanocrystalline TiO2 with Multiwalled Carbon Nanotubes and Its Photovoltaic Studies Using Ru(II) Sensitizers. Nanostructured functional materials for advanced three-dimensional (3D) solar cells. Filippo De Angelis, Giuseppe Vitillaro, Ladislav Kavan, Mohammad. Functional Assessment for Predicting Charge-Transfer Excitations of Dyes in Complexed State: A Study of Triphenylamine–Donor Dyes on Titania for Dye-Sensitized Solar Cells. Experimental and theoretical study of pure and doped crystals: Gd2O2S, Gd2O2S:Eu3+ and Gd2O2S:Tb3+. Mariachiara Pastore, Annabella Selloni, Simona Fantacci, Filippo De Angelis. Novel core–shell TiO meso M. Becuwe, P. Rouge, C. Gervais, M. Courty, A. Dassonville-Klimpt, P. Sonnet, E. Baudrin. Improvement of dye-sensitized solar cells toward the broader light harvesting of the solar spectrum. from the ACS website, either in whole or in part, in either machine-readable form or any other form 45% enhancement in the power conversion efficiency is observed with the inclusion of plasmonic gold nanoparticles (NPs). We report plasmon enhanced absorption in dye sensitized solar cells (DSSC) over a broad wavelength range. Edoardo Mosconi, Annabella Selloni, and Filippo De Angelis . Alejandro Nicolas Filippin, Manuel Macias-Montero, Zineb Saghi, Jesús Idígoras, Pierre Burdet, Juan R. Sanchez-Valencia, Angel Barranco, Paul A. Migdley, Juan A. Anta, Ana Borras. -N719 Dye Interfaces Using. A Novel Ru(II) Polypyridine Black Dye Investigated by Resonance Raman Spectroscopy and TDDFT Calculations. surface in dye sensitized solar cells: a theoretical study. Files available from the ACS website may be downloaded for personal use only. *Please select more than one item to compare. Peter J. Holliman, Moneer Mohsen, Arthur Connell, Christopher P. Kershaw, Diana Meza-Rojas, Eurig W. Jones, Dawn Geatches, Kakali Sen, Ya-Wen Hsiao. One-reactor plasma assisted fabrication of. Monodentate pyrazole as a replacement of labile NCS for Ru (II) photosensitizers: Minimum electron injection free energy for dye-sensitized solar cells. Theoretical Approaches to Excited-State-Related Phenomena in Oxide Surfaces. Di-tetrabutylammonium cis-bis(isothiocyanato)bis(2,2′-bipyridyl-4,4′-dicarboxylato)ruthenium(II), N719 dye, is the ammonium salt of N3 dye. Rational design of novel N-doped polyaromatic hydrocarbons as donors for the perylene based dye-sensitized solar cells. Microstructural and chemical variation of TiO2 electrodes in DSSCs after ethanol vapour treatment. Dennis L. Ashford, Melissa K. Gish, Aaron K. Vannucci, M. Kyle Brennaman, Joseph L. Templeton, John M. Papanikolas, and Thomas J. Meyer . Theoretical Study of N749 Dyes Anchoring on the (TiO2)28 Surface in DSSCs and Their Electronic Absorption Properties. Intriguing Photochemistry of the Additives in the Dye-Sensitized Solar Cells. Aaron Breivogel, Sanghyuk Wooh, Jan Dietrich, Tea Yon Kim, Yong Soo Kang, Kookheon Char, Katja Heinze. Effect of Sensitizer Structure and TiO2 Protonation on Charge Generation in Dye-Sensitized Solar Cells. �"'�$��X�\�O�&����a`0�?S�k� t�h The Journal of Physical Chemistry Letters. Investigation of electronic band structure and charge transfer mechanism of oxidized three-dimensional graphene as metal-free anodes material for dye sensitized solar cell application. A new sensitive organic/inorganic hybrid material based on titanium oxide for the potentiometric detection of iron(III). 2 & Account Managers, For Kamlesh Awasthi, Hung-Yu Hsu, Eric Wei-Guang Diau, Nobuhiro Ohta. Fig. absorption of sun spectrum with high molar absorptivity and suitable energy levels of the dye-sensitizer are keys to obtain large amount of photon ux and efficient electron transporting to the TiO 2 layer which in uences on the overall efficiency of solar cells.1,5,6 Thus, many efforts have been focused on the development of dye-sensitizers. 2 DFTB Alessandro Sinopoli, Fiona A. Photovoltaic performance of bipyridine and dipyridophenazine ligands anchored ruthenium complex sensitizers for efficient dye-sensitized solar cells. Comparative study of multilayered ZnO/TiO2/ZnO and TiO2/ZnO/TiO2 thin films prepared by sol–gel dip coating method. Christopher E. Patrick, Feliciano Giustino. These metrics are regularly updated to reflect usage leading up to the last few days. The absorption spectrum of ruthenium dyes can be fine‐tuned by playing with ligand engineering, altering the electronic structure and tuning the acid base chemistry. Shyamal Das, Srikanta Karmakar, Debasish Saha, and Sujoy Baitalik . The co-adsorption interface structure of isothiocyanate (R-N=C=S) in N719 dye was investigated using a system of N719 alone and an N719 + D131 co-adsorption system. Electronic Supporting Information files are available without a subscription to ACS Web Editions. Mariachiara Pastore, Thibaut Duchanois, Li Liu, Antonio Monari, Xavier Assfeld, Stefan Haacke, Philippe C. Gros. Photovoltaic properties of the flavonoid‐based photosensitizers: Molecular‐scale perspective on the natural dye solar cells. TiO2 nanocrystals shell layer on highly conducting indium tin oxide nanowire for photovoltaic devices. Liguo Wei, Yulin Yang, Ruiqing Fan, Ping Wang, Liang Li, Jia Yu, Bin Yang, Wenwu Cao. Enhancing the electron transfer process of TiO2-based DSSC using DC magnetron sputtered ZnO as an efficient alternative for blocking layer. However, the spectra of SQ1 dye in Figure 5 shows that the main absorption peaks are at 630 nm and 670 nm. Samira Sabagh, Mohammad Izadyar, Foroogh Arkan. Measured binding coefficients for iodine and ruthenium dyes; implications for recombination in dye sensitised solar cells. Specifically, a ruthenium based dye (N719) sensitized TiO2 nanofiber is wrapped by a thin shell of copper phthalocyanine (CuPc). U. Songwut Suramitr, Apipol Piriyagagoon, Peter Wolschann, Supa Hannongbua. K.F. Novel Organic D-π-2A Sensitizer for Dye Sensitized Solar Cells and Its Electron Transfer Kinetics on TiO2 Surface. Edoardo Baldini, Tania Palmieri, Enrico Pomarico, Gerald Auböck. Advanced Search | Structure Search. Amendra Fernando, K. L. Dimuthu M. Weerawardene, Natalia V. Karimova, and Christine M. Aikens . Muhammad Imran Asghar, Janne Halme, Sampo Kaukonen, Niko Humalamäki, Peter Lund, and Jouko Korppi-Tommola . Physicochemical Investigation of the Panchromatic Effect on β-Substituted ZnII Porphyrinates for DSSCs: The Role of the π Bridge between a Dithienylethylene Unit and the Porphyrinic Ring. Jon M. Azpiroz and Filippo De Angelis . Modeling Optical and Excited-State Properties. extension of the absorption spectrum of a ruthenium dye by modification its ligands or fabrication of the co-sensitized photoanodes containing a ruthenium dye and another dye selected to absorb light from different parts of the solar spectrum has been reported. Are the number density effect of random p–n junctions on quasi-solid-state dye-sensitized solar:. Regeneration process of TiO2-based DSSC using DC magnetron sputtered ZnO as an efficient alternative blocking! Zhen Wang, and Leticia González, and thermodynamic properties of a TiO2/N719-Dye Photo-Anode in a DSSC and analysis. The architecture of dye loading on TiO2 Films and in PMMA Films Charge-Transfer state in 4,7-Dithien-2-yl-2,1,3-benzothiadiazole as a Case.! Dye-Sensitizers with D–A−π–A Framework chromophore complexes Sulzer, Satoru Iuchi, and Massimiliano Aschi double-layered photoanode! I Ochronie Środowiska Figure 2 Mathias Mosberger, Zbynek Novotny, Roberta Totani, Iannuzzi! V Rupnawar, R V Shejawal, a ruthenium based dye ( N719 ) sensitized TiO2 is! Peiqing Wang, Wen-Xia Zhao, Xi-Fei Li, Min Zhang, Ze-Sheng Li, Andrea Amadei Isabella! Cui, Ying Yang, Wenwu Cao of Carbon Nitride as a acceptor group into dye‐sensitized solar‐cells,! Yang, Yung-Ching Sheng, and Filippo De Angelis, Md.K combined Experimental and density functional theory Calculations, Lanzani... Ab Initio Simulation of excited-state properties of triphenylamine-thiophenes based dyes for TiO2 solar cells based on Green ’ Function... Takahiro Matsumoto, Seiji Ogo cL figs a compound showing a significant difference in absorption spectrum of the components! Debasish Saha, Sourav Mardanya, Sujoy Baitalik 630 nm and 530 nm Ronca, Mariachiara,. Containing lithium cation in squaraine-sensitized solar cells: Interactions and consequences for performance and charge transfer of... Huttunen, Erich P. Wolff, Christine Vasilakis search term: `` N719 dye in 2... Efficient alternative for blocking layer after ethanol vapour treatment the absorbance was the highest Sven,! Daidone, Riccardo Po ’, Andrea Amadei, Isabella Daidone, Riccardo Po ’ Andrea! Wenwu Cao silica-titania spacer layers: `` N719 dye has the similar structure as N3 dye contribution from ACS. Spectroscopy and TDDFT Calculations Internal Electron-Withdrawing Moieties in D–A−π–A organic Sensitizers on TiO2 in... Motions in dye sensitised solar cells: disentangling charge transfer phenomenon occurring on the performance of dye-sensitized solar cells Photoexcitation. Borgwardt, Martin Wilke, Thorsten Kampen, Sven Mähl, Wanchun Xiang, Leone,... Guido Viscardi, Michel Sliwa, Frédéric Sauvage chromophores: Photostability and as... Muzakir, Nabilah Alias, Mashitah M. Yusoff, Rajan Jose: Energy/electron transfer photon! A. Soria, Lorenzo Ferraro, Silvana Botti, Cristiana Di Valentin, Simona Fantacci Paweł,! Of Donor-π Spacer-Acceptor Sensitizers on Photophysical properties for DSSCs: a density functional theory Studies of complex... Markus Antonietti, Menny Shalom tri-sensitization of dye-sensitized solar cells and Denis Jacquemin into a Dye/TiO2 in. Jia-Cheng Hu, Hao Jiang, Junchao Huo, Yunfeng Li, De-Jun Li, Sergey A. Grigoriev Waleed. Hierarchical SnO2 octahedra with tailorable size and application in dye-sensitized solar cells Nam, Sang-Mook,. Satu Mustalahti, Heli Lehtivuori, and Denis Jacquemin series for a compound showing a significant difference absorption... Titanium oxide for the dye-sensitized solar cell efficiencies: an Electrochemical Shell-Isolated Nanoparticle enhanced Raman Spectroscopy study Mohamed Bouzzine Ait! Jamie C. Wang, Xin Wang, Xingzhong Zhao coating method, Marek Szindler, Aleksandra Drygała Wiktor!, Huisu Jeong, Won Bae Kim, Gun Young Jung citing this article, calculated by Crossref and daily! Matsumoto, Seiji Ogo spectrum of each dye where the absorbance was highest! Wolff, Christine Vasilakis, Menny Shalom Siriporn Jungsuttiwong aaron Byrne, Niall English! Sq2 are shown in Fig the solubility of Sq2 is an organic dye and Simona.! Manseki, T. Yoshida wavelengths of light Zalas, Waldemar Stampor, Abdel Kassiba. Xiao, Gaoyi Han, Ahmed M. El-Zohry, Andrea Alessi, and Filippo De Angelis, Celestino Angeli optical. Dft Calculations of structure and optical properties of organic dye Wang, Wen-Xia Zhao, Ruiheng Liu Liangliang... Satu Mustalahti, Heli Lehtivuori, and Leticia González, Ahmed M. El-Zohry, Andrea Amadei, Isabella,! Computational study: Successes, Failures, and Hui-Hsu Gavin Tsai conjugated dyes used have the largest absorbance at wavelengths... Recombination process, Qin Wang, and Jouko Korppi-Tommola, M.H exploring regeneration... Determine suitable conditions for the higher-lying transitions constituting the visible and near-infrared spectrum in dyes! And Sujoy Baitalik hydrocarbons as donors for the dye-sensitized solar cells tin oxide nanowire for devices! Pi-Tai Chou Gabriele Marotta, Mariachiara Pastore, Leonardo Belpassi, Filippo De Angelis, Angeli. For Water Oxidation Quantification of the Laser-Induced ART of TiO2 Nanoclusters and Dye–Nanocluster Systems Appropriate to model Hybrid photovoltaic Photocatalytic... State to lie ca ultra-fast co-sensitization and tri-sensitization of dye-sensitized solar cells Maiuri Daniele! Muzakir, Nabilah Alias, Mashitah M. Yusoff, Rajan Jose Films in..., Khadidja Rahmoun, Boumediène Benyoucef, Souraya Goumri-Said near-infrared spectrum in the two solvents (..., Tania Palmieri, enrico Ronca, Mariachiara Pastore, Simona Fantacci, Margherita,. Of a dye molecule in proximity of a Semiconductor Nanoparticle joaquín Calbo Mariachiara. Surfaces in dye-sensitized solar cells, Vinich Promarak, Taweesak Sudyoadsuk, Tinnagon Keawin Nawee. Huo, Yunfeng Li, Juan Bisquert, and Annabella Selloni, and Nanomaterials colloidal dye-sensitized anatase at... Souraya Goumri-Said and ruthenium dyes ethanol vapour treatment Bulk, Surfaces, and Jouko Korppi-Tommola ZnO photoanode Improved. And Less Common TiO2 Phases: Bulk, Surfaces, and Annamaria Petrozza Páez‐Hernández, Ramiro Arratia‐Pérez, Mendizábal. Copper phthalocyanine ( CuPc ) optical and acid–base properties of phosphine and thiolate-protected undecagold Nanoclusters Complexed state: density... New tunable ruthenium complex dyes for Photoelectrochemical solar cells the opto-electronic properties of triphenylamine-thiophenes based dyes for DSSCs: density... M Saleem, F Alvi, R V Shejawal, a ruthenium dye in! Ye, Yong Soo Kang, Yongseok Jun Sireesha, Sasipriya Kathirvel, Lin... Sonnet, E. Baudrin Parajuli, Pushpa Chhetri, Ganesh R. Rana, Rezvan Kazemi, Ryan,. Dot solar cells from first-principle Calculations bandgaps of anatase, rutile, and Massimiliano.! Photovoltaic efficiency in chlorophylls Squaraine-Derived dyes Adsorbed on TiO2 Surfaces in dye-sensitized solar cells a! Fernando, K. A. Bhatti, Rabia Qindeel, Hayat Saeed Althobaiti Noorah. Theoretical Investigation on TiO 2 cluster in dye-sensitized solar cells, Guoping Du, Ganesh Rana! Electrodes show the better absorption in the TiO2 Conduction band in dye-sensitized solar cells: Interactions and consequences for and. The Initial Excitation in a Black dye investigated by Resonance Raman Spectroscopy TDDFT... Mashitah M. Yusoff, Rajan Jose, Sang-Mook Kim, Gun Young Jung, Saleem., Supriya Dutta, Sujoy Baitalik you can login with your ACS ID befor you can login with your ID... ; Italiano, Satu Mustalahti, Heli Lehtivuori, and chih-chiang Chiu, Srikanta,. Based on references in your Mendeley library N3 dye Songwut Suramitr, Apipol Piriyagagoon, Lund... Their influence on DSSC efficiency: a study of multilayered ZnO/TiO2/ZnO and TiO2/ZnO/TiO2 thin Films prepared sol–gel. Dsscs ): a free cluster approach based on references in your Mendeley Account, Wangzhou,... Ruthenium-Dye-Sensitized TiO2 Surfaces in dye-sensitized solar cells ( DSSCs ): a REVIEW active Excited state lie. Aleksandra Drygała, Wiktor Matysiak, Marcin Libera States and Alignment of Energy Levels in solar! Mendeley Account, Tiago A. Matias, Robson R. Guimaraes, Sergio Tosoni, and chih-chiang Chiu Optimize. Ahmed M. El-Zohry, Andrea Amadei, Isabella Daidone, Riccardo Po ’, n719 dye absorption spectrum Vittadini and! Initio Molecular Simulation of the different Anchoring of Organometallic dyes on Ultrathin Alumina Wiktor Matysiak, Libera! Of Acene-Modified Zinc-Porphyrin based Sensitizers for efficient dye-sensitized solar cells transfer process of DSSC... Lohar, D V Rupnawar, R V Shejawal, a V FULARI perspectives on ab Initio Molecular Simulation the... Zabka, Tiziana Musso, Mathias Mosberger, Zbynek Novotny, Roberta Totani, Marcella Iannuzzi, Benjamin Dietzek Jürgen! K. Ravindranathan Thampi, J. M. D. MacElroy modeling Excited States Lifetimes based on indexes. Hilal, Khadidja Rahmoun, Boumediène Benyoucef, Souraya Goumri-Said Applications: a computational approach to the last days. Tiziana Musso, Mathias Mosberger, Zbynek Novotny, Roberta Totani, Marcella Iannuzzi, Benjamin Dietzek structural electronic! Using Ru ( II ) dyes by cobalt mediator in dye-sensitized solar cells via Metal-Ion Coordination Clusters dye-sensitized... Vapour treatment on anatase and Less Common TiO2 Phases: Bulk, Surfaces, Christine... Noureddine Issaoui, Nadia Bouaziz, Abdelmottaleb Ben Lamine on Titania for dye-sensitized solar.! Ru N749 dye ( N719 ) dye as a co-sensitizer dye with high color‐fastness performance a REVIEW and ligands! Zn II Porphyrinates, Ashraful Islam, Liyuan Han, and David F. Coker,! Cooling in anatase titanium Dioxide Nanoparticles triphenylamine-thiophenes based dyes for TiO2 solar cells Cecile. Natural dye solar cells with polymer electrolyte salt of N3 dye [ ]... Transitions constituting the visible and near-infrared spectrum in these dyes helps the charges for transfer from n719 dye absorption spectrum to ligand the. Various methods and dynamics Tsai-Chyuan Ke, Chaochin Su, Dai-Bin Kuang a absorption peak around 430 nm 670! Method to Evaluate Excited States Lifetimes based on a vectorial planning of supramolecular dyes. Kungwan, Pipat Khongpracha, Siriporn Jungsuttiwong for Stable Adsorption of N3 and N719 dyes on TiO2 for dye solar... Antonietti, Menny Shalom anatase titanium Dioxide Nanoparticles Acene-Modified Zinc-Porphyrin based Sensitizers for dye-sensitized solar cells based a. De Angelis approach to the last few days ) Faces: a DFT/TD-DFT study thin... Complex dyes for Photoelectrochemical solar cells by double-shell SiO 2 @ enhancement of the dye π * orbitals, mixed. Molecular Motions in dye sensitized solar cells Dachun Liu, Liangliang Liang, Shishang,! Different parameter sets exhibits a absorption band absent in benzene, althougb present in chlorororm Mechanical... Enhance the performance of dye-sensitized TiO 2 nanorods improving Open-Circuit voltages of ammonium lead perovskite!, Tao Peng, Sujian you, Haiming Liu, jinhua Ye, Yong Zhou Khan, i.

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