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_e _e _aGomez, Rafael. _d _b4 _u _c0 _q16 |
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_a _aPlastic solar cells. _d _b _n _c _h6 _p |
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_a _aABSTRACT : We present a multidisciplinary approach to the field of organic solar cells and propose examples of this technology to illustrate core concepts in chemistry. The principles of operation of a plastic solar cell can be used to introduce key issues such as the photovoltaic effect or the photoinduced electron-transfer process. From a spectroscopic perspective, we show how the optical bandgap of the light-absorbing components can be correlated with their physical and electronic structures. From the materials science point of view, the principal concept of molecular design is introduced showing how the evolution of the synthesis of organic molecules and polymers has provided materials with tailored properties. The importance of multidisciplinarity in research is presented showing that only the collaborative effort between synthetic chemists, who design and synthesize the materials, and the physicists, materials scientists, and engineers has made possible the advance of the field. _d _b _c56 |
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_x _x _aSolar cells.;Direct energy conversion,;Photovoltaic cells.;Solar batteries.;Solar energy.;Plastics.;Photosynthesis.;Charge exchange.;Chemistry - Study and teaching. _d _b _z _y20 _v |
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_i _i _t _c _b _s1 _q _f _k40 _p _d _e _aSegura, Jose L. _l _n6 |
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_a _a _d _gv. 84 no. 2 (Feb. 2007) pp. 253-258. _m _tJournal of Chemical Education _b _v _i _p |
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