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[2] | N. J. Turro, Modern Molecular Photochemistry, Benjamin/Cummings, New York, 1978. |
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[3] | M. W. Tausch, S. Korn: “A Laboratory Simulation for Coupled Cycles of Photosynthesis and Respiration” in Journal of Chemical Education, 78 (9), 1238 (2001). |
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[4] | M. W. Tausch, C. Bohrmann: “Photogalvanic Cells for Classroom Investigations - A Contribution for the Ongoing Curriculum Modernization” bei Journal of Chemical Education, 80 (12), 1471 (2003). |
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[5] | M. W. Tausch, C. Bohrmann-Linde, J. Ibanez, D.Zavala-Araiza, B. Sotomayor-Martinez Barranco, J. Torres-Perez, C. Camacho-Zuniga: “A Demonstration of Simultanous Electrochemo-luminescence”, Journal of Chemical Education, 90 (4), 470 (2013). |
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[6] | M. W. Tausch, A. Banerji, U. Scherf: “Classroom Experiments and Teaching Materials on OLEDs with Semiconducting Polymers”, Education Quimica, 24 (1), 17 (2013). |
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[7] | http://www.chemiedidaktik.uni-wuppertal.de/lehre/photo-mol/index.html |
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[8] | E. D. Bergmann, A. Weizmann, E. Fischer, JACS, 72, 5009 (1950). |
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[9] | M. W. Tausch: “Teaching Photochemistry with Microscale Experiments”, Education Quimica, 16 (4), 529 (2005). |
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[10] | M. W. Tausch, S. Spinnen, M. Essers, S. Krees: „Light Absorption and Emission in Solutions and Solid Matrices”, Praxis der Naturwsseschaften-Chemie in der Schule, 63, (2) 35 (2014) (German). |
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[11] | M. W. Tausch, S. Spinnen: “A Multiple Chameleon - Photochromism, Solvatochromism and Aggrgation Induced Fluorescence”, Praxis der Naturwsseschaften-Chemie in der Schule, 64 (6), 46 (2015) (German). |
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[12] | J. Mei, Y. Hong, J. W. Y. Lam, A. Qin, Y. Tang, B. Zhong Tang: “Aggregation-Induced Emission: The Whole Is More Brilliant than the Parts”, Advanced Materials, 26 (31), 5429 (2014). |
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