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Handbook of Aggregation-Induced Emission, Volume 3. Группа авторовЧитать онлайн книгу.

Handbook of Aggregation-Induced Emission, Volume 3 - Группа авторов


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Donors Affording Long Lifetimes of Triplet Charge‐Separated States. ChemPhysChem. 2010; 11(12):2594–605.

      84 84 Cui L, Yu S, Gao W, Zhang X, Deng S, Zhang CY. Tetraphenylenthene‐Based Conjugated Microporous Polymer for Aggregation‐Induced Electrochemiluminescence. ACS. Appl. Mater. Interfaces. 2020; 12(7):7966–73.

      85 85 Molapo KM, Venkatanarayanan A, Dolan CM, Prendergast U, Baker PG, Iwuoha EI, et al. High Efficiency Electrochemiluminescence from Polyaniline : Ruthenium Metal Complex Films. Electrochem. Commun. 2014; 48:95–8.

      86 86 Yamaguchi S, Tamao K. Silole‐Containing – and – Conjugated Compounds. Dalt. Trans. 1998;3693–702.

      87 87 Sartin MM, Boydston AJ, Pagenkopf BL, Bard AJ. Electrochemistry, Spectroscopy, and Electrogenerated Chemiluminescence of Silole‐Based Chromophores. J. Am. Chem. Soc. 2006; 128(31):10163–70.

      88 88 Booker C, Wang X, Haroun S, Zhou J, Jennings M, Pagenkopf BL, et al. Tuning of Electrogenerated Silole Chemiluminescence. Angew. Chemie. 2008; 120(40):7845–9.

      89 89 Wei X, Zhu MJ, Cheng Z, Lee M, Yan H, Lu C, et al. Aggregation‐Induced Electrochemiluminescence of Carboranyl Carbazoles in Aqueous Media. Angew. Chem. Int. Ed. 2019; 58(10):3162–6.

      90 90 Zhang Y, Wang Y, Wang J, Liang XJ. Improved Pharmaceutical Research and Development with Aie‐Based Nanostructures. Mater. Horizons. 2018; 5(5):799–812.

      91 91 Marsh A V., Cheetham NJ, Little M, Dyson M, White AJP, Beavis P, et al. Carborane‐Induced Excimer Emission of Severely Twisted Bis‐O‐Carboranyl Chrysene. Angew. Chem Int. Ed. 2018; 57(33):10640–5.

      92 92 Jiang H, Qin Z, Zheng Y, Liu L, Wang X. Aggregation‐Induced Electrochemiluminescence by Metal‐Binding Protein Responsive Hydrogel Scaffolds. Small. 2019; 15(18):1901170.

      93 93 Yang Y, Hu G‐B, Liang W‐B, Yao L‐Y, Huang W, Zhang Y‐J, et al. An AIEgen‐Based 2d Ultrathin Metal‐Organic Layer as an Electrochemiluminescence Platform for Ultrasensitive Biosensing of Carcinoembryonic Antigen. Nanoscale. 2020; 12:5932–41.

      94 94 Sun CL, Chang CT, Lee HH, Zhou J, Wang J, Sham TK, et al. Microwave‐Assisted Synthesis of A Core‐Shell Mwcnt/Gonr Heterostructure for the Electrochemical Detection of Ascorbic Acid, Dopamine, and Uric Acid. ACS. Nano. 2011; 5(10):7788–95.

      95 95 Wang Z, Wang N, Gao H, Quan Y, Ju H, Cheng Y. Amplified Electrochemiluminescence Signals Promoted by The Aie‐Active Moiety Of D–A Type Polymer Dots For Biosensing. Analyst. 2020; 145(1):233–9.

      96 96 Liu JL, Zhuo Y, Chai YQ, Yuan R. BSA Stabilized Tetraphenylethylene Nanocrystals as Aggregation‐Induced Enhanced Electrochemiluminescence Emitters for Ultrasensitive Microrna Assay. Chem. Commun. 2019; 55(67):9959–62.

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