Artigos de revistas sobre o tema "Polypyridyl"
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Mazuryk, Olga, Przemysław Gajda-Morszewski e Małgorzata Brindell. "Versatile Impact of Serum Proteins on Ruthenium(II) Polypyridyl Complexes Properties - Opportunities and Obstacles". Current Protein & Peptide Science 20, n.º 11 (24 de outubro de 2019): 1052–59. http://dx.doi.org/10.2174/1389203720666190513090851.
Texto completo da fonteO’Neill, Luke, Laura Perdisatt e Christine O’Connor. "Structure-Property Relationships for a Series of Ruthenium(II) Polypyridyl Complexes Elucidated through Raman Spectroscopy". Journal of Spectroscopy 2018 (1 de novembro de 2018): 1–11. http://dx.doi.org/10.1155/2018/3827130.
Texto completo da fonteLu, Xiaoqing, Shuxian Wei, Chi-Man Lawrence Wu, Ning Ding, Shaoren Li, Lianming Zhao e Wenyue Guo. "Theoretical Insight into the Spectral Characteristics of Fe(II)-Based Complexes for Dye-Sensitized Solar Cells—Part I: Polypyridyl Ancillary Ligands". International Journal of Photoenergy 2011 (2011): 1–11. http://dx.doi.org/10.1155/2011/316952.
Texto completo da fonteNandhini, T., K. R. Anju, V. M. Manikandamathavan, V. G. Vaidyanathan e B. U. Nair. "Interactions of Ru(ii) polypyridyl complexes with DNA mismatches and abasic sites". Dalton Transactions 44, n.º 19 (2015): 9044–51. http://dx.doi.org/10.1039/c5dt00807g.
Texto completo da fonteAmiri, Mona, Octavio Martinez Perez, Riley T. Endean, Loorthuraja Rasu, Prabin Nepal, Shuai Xu e Steven H. Bergens. "Solid-phase synthesis and photoactivity of Ru-polypyridyl visible light chromophores bonded through carbon to semiconductor surfaces". Dalton Transactions 49, n.º 29 (2020): 10173–84. http://dx.doi.org/10.1039/d0dt01776k.
Texto completo da fonteRace, N. A., W. Zhang, M. E. Screen, B. A. Barden e W. R. McNamara. "Iron polypyridyl catalysts assembled on metal oxide semiconductors for photocatalytic hydrogen generation". Chemical Communications 54, n.º 26 (2018): 3290–93. http://dx.doi.org/10.1039/c8cc00453f.
Texto completo da fontePierroz, Vanessa, Riccardo Rubbiani, Christian Gentili, Malay Patra, Cristina Mari, Gilles Gasser e Stefano Ferrari. "Dual mode of cell death upon the photo-irradiation of a RuIIpolypyridyl complex in interphase or mitosis". Chemical Science 7, n.º 9 (2016): 6115–24. http://dx.doi.org/10.1039/c6sc00387g.
Texto completo da fonteLiu, Ze-Yu, Jin Zhang, Yan-Mei Sun, Chun-Fang Zhu, Yan-Na Lu, Jian-Zhong Wu, Jing Li, Hai-Yang Liu e Yong Ye. "Photodynamic antitumor activity of Ru(ii) complexes of imidazo-phenanthroline conjugated hydroxybenzoic acid as tumor targeting photosensitizers". Journal of Materials Chemistry B 8, n.º 3 (2020): 438–46. http://dx.doi.org/10.1039/c9tb02103e.
Texto completo da fonteMartin, Aaron, Aisling Byrne, Ciarán Dolan, Robert J. Forster e Tia E. Keyes. "Solvent switchable dual emission from a bichromophoric ruthenium–BODIPY complex". Chemical Communications 51, n.º 87 (2015): 15839–41. http://dx.doi.org/10.1039/c5cc07135f.
Texto completo da fonteLeem, Gyu, Shahar Keinan, Junlin Jiang, Zhuo Chen, Toan Pho, Zachary A. Morseth, Zhenya Hu et al. "Ru(bpy)32+ derivatized polystyrenes constructed by nitroxide-mediated radical polymerization. Relationship between polymer chain length, structure and photophysical properties". Polymer Chemistry 6, n.º 47 (2015): 8184–93. http://dx.doi.org/10.1039/c5py01289a.
Texto completo da fonteYamaguchi, Eiji, Nao Taguchi e Akichika Itoh. "Ruthenium polypyridyl complex-catalysed aryl alkoxylation of styrenes: improving reactivity using a continuous flow photo-microreactor". Reaction Chemistry & Engineering 4, n.º 6 (2019): 995–99. http://dx.doi.org/10.1039/c9re00061e.
Texto completo da fonteMargonis, Caroline M., Marissa Ho, Benjamin D. Travis, William W. Brennessel e William R. McNamara. "Iron polypyridyl complex adsorbed on carbon surfaces for hydrogen generation". Chemical Communications 57, n.º 62 (2021): 7697–700. http://dx.doi.org/10.1039/d1cc02131a.
Texto completo da fonteNotaro, Anna, e Gilles Gasser. "Monomeric and dimeric coordinatively saturated and substitutionally inert Ru(ii) polypyridyl complexes as anticancer drug candidates". Chemical Society Reviews 46, n.º 23 (2017): 7317–37. http://dx.doi.org/10.1039/c7cs00356k.
Texto completo da fonteLi, Shuang, Gang Xu, Yuhua Zhu, Jian Zhao e Shaohua Gou. "Bifunctional ruthenium(ii) polypyridyl complexes of curcumin as potential anticancer agents". Dalton Transactions 49, n.º 27 (2020): 9454–63. http://dx.doi.org/10.1039/d0dt01040e.
Texto completo da fonteMartínez-Alonso, Marta, e Gilles Gasser. "Ruthenium polypyridyl complex-containing bioconjugates". Coordination Chemistry Reviews 434 (maio de 2021): 213736. http://dx.doi.org/10.1016/j.ccr.2020.213736.
Texto completo da fonteBanerjee, Tanmay, Abul Kalam Biswas, Tuhin Subhra Sahu, Bishwajit Ganguly, Amitava Das e Hirendra Nath Ghosh. "New Ru(ii)/Os(ii)-polypyridyl complexes for coupling to TiO2 surfaces through acetylacetone functionality and studies on interfacial electron-transfer dynamics". Dalton Trans. 43, n.º 36 (2014): 13601–11. http://dx.doi.org/10.1039/c4dt01571a.
Texto completo da fonteTaheri, Atefeh, e Gerald J. Meyer. "Temperature dependent iodide oxidation by MLCT excited states". Dalton Trans. 43, n.º 47 (2014): 17856–63. http://dx.doi.org/10.1039/c4dt01683a.
Texto completo da fontePoynton, Fergus E., Sandra A. Bright, Salvador Blasco, D. Clive Williams, John M. Kelly e Thorfinnur Gunnlaugsson. "The development of ruthenium(ii) polypyridyl complexes and conjugates forin vitrocellular andin vivoapplications". Chemical Society Reviews 46, n.º 24 (2017): 7706–56. http://dx.doi.org/10.1039/c7cs00680b.
Texto completo da fonteLiao, Xiangwen, Guijuan Jiang, Jintao Wang, Xuemin Duan, Zhouyuji Liao, Xiaoli Lin, Jihong Shen, Yanshi Xiong e Guangbin Jiang. "Two ruthenium polypyridyl complexes functionalized with thiophen: synthesis and antibacterial activity against Staphylococcus aureus". New Journal of Chemistry 44, n.º 40 (2020): 17215–21. http://dx.doi.org/10.1039/d0nj02944k.
Texto completo da fonteSun, Qinchao, Bogdan Dereka, Eric Vauthey, Latévi M. Lawson Daku e Andreas Hauser. "Ultrafast transient IR spectroscopy and DFT calculations of ruthenium(ii) polypyridyl complexes". Chemical Science 8, n.º 1 (2017): 223–30. http://dx.doi.org/10.1039/c6sc01220e.
Texto completo da fonteCardin, Christine J., John M. Kelly e Susan J. Quinn. "Photochemically active DNA-intercalating ruthenium and related complexes – insights by combining crystallography and transient spectroscopy". Chemical Science 8, n.º 7 (2017): 4705–23. http://dx.doi.org/10.1039/c7sc01070b.
Texto completo da fonteQueyriaux, N., E. Giannoudis, C. D. Windle, S. Roy, J. Pécaut, A. G. Coutsolelos, V. Artero e M. Chavarot-Kerlidou. "A noble metal-free photocatalytic system based on a novel cobalt tetrapyridyl catalyst for hydrogen production in fully aqueous medium". Sustainable Energy & Fuels 2, n.º 3 (2018): 553–57. http://dx.doi.org/10.1039/c7se00428a.
Texto completo da fonteConti, Luca, Silvia Ciambellotti, Gina Elena Giacomazzo, Veronica Ghini, Lucrezia Cosottini, Elisa Puliti, Mirko Severi et al. "Ferritin nanocomposites for the selective delivery of photosensitizing ruthenium-polypyridyl compounds to cancer cells". Inorganic Chemistry Frontiers 9, n.º 6 (2022): 1070–81. http://dx.doi.org/10.1039/d1qi01268a.
Texto completo da fonteAzar, Daniel F., Hassib Audi, Stephanie Farhat, Mirvat El-Sibai, Ralph J. Abi-Habib e Rony S. Khnayzer. "Phototoxicity of strained Ru(ii) complexes: is it the metal complex or the dissociating ligand?" Dalton Transactions 46, n.º 35 (2017): 11529–32. http://dx.doi.org/10.1039/c7dt02255g.
Texto completo da fonteTripathy, Suman Kumar, Umasankar De, Niranjan Dehury, Satyanarayan Pal, Hyung Sik Kim e Srikanta Patra. "Dinuclear [{(p-cym)RuCl}2(μ-phpy)](PF6)2 and heterodinuclear [(ppy)2Ir(μ-phpy)Ru(p-cym)Cl](PF6)2 complexes: synthesis, structure and anticancer activity". Dalton Trans. 43, n.º 39 (2014): 14546–49. http://dx.doi.org/10.1039/c4dt01033g.
Texto completo da fonteRyan, Gary J., Fergus E. Poynton, Robert B. P. Elmes, Marialuisa Erby, D. Clive Williams, Susan J. Quinn e Thorfinnur Gunnlaugsson. "Unexpected DNA binding properties with correlated downstream biological applications in mono vs. bis-1,8-naphthalimide Ru(ii)-polypyridyl conjugates". Dalton Transactions 44, n.º 37 (2015): 16332–44. http://dx.doi.org/10.1039/c5dt00360a.
Texto completo da fonteJella, Tejaswi, Malladi Srikanth, Rambabu Bolligarla, Yarasi Soujanya, Surya Prakash Singh e Lingamallu Giribabu. "Benzimidazole-functionalized ancillary ligands for heteroleptic Ru(ii) complexes: synthesis, characterization and dye-sensitized solar cell applications". Dalton Transactions 44, n.º 33 (2015): 14697–706. http://dx.doi.org/10.1039/c5dt02074c.
Texto completo da fonteLuo, Zuandi, Lianling Yu, Fang Yang, Zhennan Zhao, Bo Yu, Haoqiang Lai, Ka-Hing Wong, Sai-Ming Ngai, Wenjie Zheng e Tianfeng Chen. "Ruthenium polypyridyl complexes as inducer of ROS-mediated apoptosis in cancer cells by targeting thioredoxin reductase". Metallomics 6, n.º 8 (2014): 1480–90. http://dx.doi.org/10.1039/c4mt00044g.
Texto completo da fonteZhao, Xueze, Mingle Li, Wen Sun, Jiangli Fan, Jianjun Du e Xiaojun Peng. "An estrogen receptor targeted ruthenium complex as a two-photon photodynamic therapy agent for breast cancer cells". Chemical Communications 54, n.º 51 (2018): 7038–41. http://dx.doi.org/10.1039/c8cc03786h.
Texto completo da fonteJakubaszek, Marta, Bruno Goud, Stefano Ferrari e Gilles Gasser. "Mechanisms of action of Ru(ii) polypyridyl complexes in living cells upon light irradiation". Chemical Communications 54, n.º 93 (2018): 13040–59. http://dx.doi.org/10.1039/c8cc05928d.
Texto completo da fonteTripathy, Suman Kumar, Umasankar De, Niranjan Dehury, Paltan Laha, Manas Kumar Panda, Hyung Sik Kim e Srikanta Patra. "Cyclometallated iridium complexes inducing paraptotic cell death like natural products: synthesis, structure and mechanistic aspects". Dalton Transactions 45, n.º 38 (2016): 15122–36. http://dx.doi.org/10.1039/c6dt00929h.
Texto completo da fonteGill, Martin R., Michael G. Walker, Sarah Able, Ole Tietz, Abirami Lakshminarayanan, Rachel Anderson, Rod Chalk et al. "An 111In-labelled bis-ruthenium(ii) dipyridophenazine theranostic complex: mismatch DNA binding and selective radiotoxicity towards MMR-deficient cancer cells". Chemical Science 11, n.º 33 (2020): 8936–44. http://dx.doi.org/10.1039/d0sc02825h.
Texto completo da fonteWeder, Nicola, Benjamin Probst, Laurent Sévery, Ricardo J. Fernández-Terán, Jan Beckord, Olivier Blacque, S. David Tilley, Peter Hamm, Jürg Osterwalder e Roger Alberto. "Mechanistic insights into photocatalysis and over two days of stable H2 generation in electrocatalysis by a molecular cobalt catalyst immobilized on TiO2". Catalysis Science & Technology 10, n.º 8 (2020): 2549–60. http://dx.doi.org/10.1039/d0cy00330a.
Texto completo da fonteQiu, Yuqing, Yuquan Feng, Qian Zhao, Hongwei Wang, Yingchen Guo e Dongfang Qiu. "White light emission from a green cyclometalated platinum(ii) terpyridylphenylacetylide upon titration with Zn(ii) and Eu(iii )". Dalton Transactions 49, n.º 32 (2020): 11163–69. http://dx.doi.org/10.1039/d0dt02336a.
Texto completo da fonteSingh, Vikram, Prakash Chandra Mondal, Megha Chhatwal, Yekkoni Lakshmanan Jeyachandran e Michael Zharnikov. "Catalytic oxidation of ascorbic acid via copper–polypyridyl complex immobilized on glass". RSC Adv. 4, n.º 44 (2014): 23168–76. http://dx.doi.org/10.1039/c4ra00817k.
Texto completo da fonteYang, Jing, Qian Cao, Wei-Liang Hu, Rui-Rong Ye, Liang He, Liang-Nian Ji, Peter Z. Qin e Zong-Wan Mao. "Theranostic TEMPO-functionalized Ru(ii) complexes as photosensitizers and oxidative stress indicators". Dalton Transactions 46, n.º 2 (2017): 445–54. http://dx.doi.org/10.1039/c6dt04028d.
Texto completo da fonteXiong, Zushuang, Jing-Xiang Zhong, Zhennan Zhao e Tianfeng Chen. "Biocompatible ruthenium polypyridyl complexes as efficient radiosensitizers". Dalton Transactions 48, n.º 13 (2019): 4114–18. http://dx.doi.org/10.1039/c9dt00333a.
Texto completo da fonteBanerjee, Samya, Ila Pant, Imran Khan, Puja Prasad, Akhtar Hussain, Paturu Kondaiah e Akhil R. Chakravarty. "Remarkable enhancement in photocytotoxicity and hydrolytic stability of curcumin on binding to an oxovanadium(iv) moiety". Dalton Transactions 44, n.º 9 (2015): 4108–22. http://dx.doi.org/10.1039/c4dt02165g.
Texto completo da fonteDe Vos, Arthur, Kurt Lejaeghere, Francesco Muniz Miranda, Christian V. Stevens, Pascal Van Der Voort e Veronique Van Speybroeck. "Electronic properties of heterogenized Ru(ii) polypyridyl photoredox complexes on covalent triazine frameworks". Journal of Materials Chemistry A 7, n.º 14 (2019): 8433–42. http://dx.doi.org/10.1039/c9ta00573k.
Texto completo da fonteElgrishi, Noémie, Matthew B. Chambers, Xia Wang e Marc Fontecave. "Molecular polypyridine-based metal complexes as catalysts for the reduction of CO2". Chemical Society Reviews 46, n.º 3 (2017): 761–96. http://dx.doi.org/10.1039/c5cs00391a.
Texto completo da fonteVilvamani, Narayanasamy, Tarkeshwar Gupta, Rinkoo Devi Gupta e Satish Kumar Awasthi. "Bottom-up molecular-assembly of Ru(ii)polypyridyl complex-based hybrid nanostructures decorated with silver nanoparticles: effect of Ag nitrate concentration". RSC Adv. 4, n.º 38 (2014): 20024–30. http://dx.doi.org/10.1039/c4ra01347f.
Texto completo da fonteChen, Tianfeng, Wen-Jie Mei, Yum-Shing Wong, Jie Liu, Yanan Liu, Huang-Song Xie e Wen-Jie Zheng. "Correction: Chiral ruthenium polypyridyl complexes as mitochondria-targeted apoptosis inducers". MedChemComm 9, n.º 4 (2018): 745. http://dx.doi.org/10.1039/c8md90010h.
Texto completo da fonteZayat, Leonardo, Oscar Filevich, Luis M. Baraldo e Roberto Etchenique. "Ruthenium polypyridyl phototriggers: from beginnings to perspectives". Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences 371, n.º 1995 (28 de julho de 2013): 20120330. http://dx.doi.org/10.1098/rsta.2012.0330.
Texto completo da fonteShi, Hongdong, Tiantian Fang, Yao Tian, Hai Huang e Yangzhong Liu. "A dual-fluorescent nano-carrier for delivering photoactive ruthenium polypyridyl complexes". Journal of Materials Chemistry B 4, n.º 27 (2016): 4746–53. http://dx.doi.org/10.1039/c6tb01070a.
Texto completo da fonteEskandari, Arvin, Arunangshu Kundu, Chunxin Lu, Sushobhan Ghosh e Kogularamanan Suntharalingam. "Synthesis, characterization, and cytotoxic properties of mono- and di-nuclear cobalt(ii)-polypyridyl complexes". Dalton Transactions 47, n.º 16 (2018): 5755–63. http://dx.doi.org/10.1039/c8dt00577j.
Texto completo da fonteAkatsuka, Komi, Ryosuke Abe, Tsugiko Takase e Dai Oyama. "Coordination Chemistry of Ru(II) Complexes of an Asymmetric Bipyridine Analogue: Synergistic Effects of Supporting Ligand and Coordination Geometry on Reactivities". Molecules 25, n.º 1 (19 de dezembro de 2019): 27. http://dx.doi.org/10.3390/molecules25010027.
Texto completo da fonteSoman, Suraj, Jennifer C. Manton, Jane L. Inglis, Yvonne Halpin, Brendan Twamley, Edwin Otten, Wesley R. Browne, Luisa De Cola, Johannes G. Vos e Mary T. Pryce. "New synthetic pathways to the preparation of near-blue emitting heteroleptic Ir(iii)N6 coordinated compounds with microsecond lifetimes". Chem. Commun. 50, n.º 49 (2014): 6461–63. http://dx.doi.org/10.1039/c4cc02249a.
Texto completo da fonteByrne, Aisling, Christopher S. Burke e Tia E. Keyes. "Precision targeted ruthenium(ii) luminophores; highly effective probes for cell imaging by stimulated emission depletion (STED) microscopy". Chemical Science 7, n.º 10 (2016): 6551–62. http://dx.doi.org/10.1039/c6sc02588a.
Texto completo da fonteViere, Erin J., Ashley E. Kuhn, Margaret H. Roeder, Nicholas A. Piro, W. Scott Kassel, Timothy J. Dudley e Jared J. Paul. "Spectroelectrochemical studies of a ruthenium complex containing the pH sensitive 4,4′-dihydroxy-2,2′-bipyridine ligand". Dalton Transactions 47, n.º 12 (2018): 4149–61. http://dx.doi.org/10.1039/c7dt04554a.
Texto completo da fonteLenis-Rojas, Oscar, Catarina Roma-Rodrigues, Alexandra Fernandes, Andreia Carvalho, Sandra Cordeiro, Jorge Guerra-Varela, Laura Sánchez et al. "Evaluation of the In Vitro and In Vivo Efficacy of Ruthenium Polypyridyl Compounds against Breast Cancer". International Journal of Molecular Sciences 22, n.º 16 (18 de agosto de 2021): 8916. http://dx.doi.org/10.3390/ijms22168916.
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