AVANCES EN ELECTRÓNICA ORGÁNICA: EL DISEÑO DE TRANSISTORES ORGÁNICOS FLEXIBLES

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GIOVANNA ANGÉLICA VÁZQUEZ HERNÁNDEZ
LIOUDMILA FOMINA
ROBERTO SALCEDO

Resumen

La electrónica flexible está redefiniendo los semiconductores tradicionales, permitiendo dispositivos que se doblan y estiran sin perder funcionalidad. Desde pantallas OLED hasta pieles electrónicas, esta tecnología promete transformar nuestra interacción con el entorno, con aplicaciones en medicina, robótica y energías renovables.

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VÁZQUEZ HERNÁNDEZ, G. A. ., FOMINA, L. ., & SALCEDO, R. . (2025). AVANCES EN ELECTRÓNICA ORGÁNICA: EL DISEÑO DE TRANSISTORES ORGÁNICOS FLEXIBLES. +Ciencia, (38), 40–43. Recuperado a partir de https://revistas.anahuac.mx/index.php/masciencia/article/view/2886
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Citas

Forrest, S. R. (2020). Organic Electronics. Oxford University Press.

Hussain, M., & Hussain, M. M. (2015). CMOS-Technology-Enabled Flexible and Stretchable Electronics for Internet of Everything Applications. Advanced Materials, 28(22), 4219–4249.

Khim, D., Ryu, S., Park, W., Kim, H., Lee, M., & Noh, Y. Y. (2016). Precisely Controlled Ultrathin Conjugated Polymer Films for Large Area Transparent Transistors and Highly Sensitive Chemical Sensors. Advanced Materials, 28(14), 2752–2759.

Liao, C., Zhang, M., Yao, Y., Hua, T., Li, L., & Yan, F. (2015). Flexible Organic Electronics in Biology: Materials and Devices. Advanced Materials, 27(46), 7493–7527.

Liu, K., Ouyang, B., Guo, X., Guo, Y., & Liu, Y. (2022). Advances in flexible organic field-effect transistors and their applications for flexible electronics. npj Flexible Electronics, 6(1).

Myny, K. (2018). The development of flexible integrated circuits based on thin-film transistors. Nature Electronics, 1, 30–39.

Olivier, Y., Niedzialek, D., Lemaur, V., Pisula, W., Müllen, K., Koldemir, U., Reynolds, J. R., Lazzaroni, R., Cornil, J., & Beljonne, D. (2014). 25th anniversary article: High-mobility hole and electron transport conjugated polymers: how structure defines function. Advanced Materials, 26(14), 2119–2136.

Onorato, J., Pakhnyuk, V., & Luscombe, C. K. (2017). Structure and design of polymers for durable, stretchable organic electronics. Polymer Journal, 49, 41–60.

Park, S. K., Kim, J. H., & Park, S. Y. (2018). Organic 2D optoelectronic crystals: charge transport, emerging functions, and their design perspective. Advanced Materials, 30(42), 1704759.

Reineke, S., Lindner, F., Schwartz, G., Seidler, N., Walzer, K., Lüssem, B., & Leo, K. (2009). White organic light-emitting diodes with fluorescent tube efficiency. Nature, 459, 234−238.

Reineke, S., Thomschke, M., Lüssem, B., & Leo, K. (2013). White organic light-emitting diodes: status and perspective. Reviews of Modern Physics, 85, 1245−1293.

Reyes-Martinez, M. A., Crosby, A. J., & Briseno, A. L. (2015). Rubrene crystal field-effect mobility modulation via conducting channel wrinkling. Nature Communications, 6, 6948.

Roth, B., Søndergaard, R. R., & Krebs, F. C. (2015). Roll-to-roll printing and coating techniques for manufacturing large-area flexible organic electronics. En Handbook of Flexible Organic Electronics: Materials, Manufacturing and Applications (pp. 171–197). Woodhead Publishing.

Tang, C. W., & VanSlyke, S. A. (1987). Organic electroluminescent diodes. Applied Physics Letters, 51(12), 913−915.

Tee, B. C.-K., Chortos, A., Berndt, A., Nguyen, A., McGuire, A., Lin, Z., Tien, K., Bae, W.-G., Wang, H., Mei, P., Chou, H.-H., Cui, B., Deisseroth, K., Ng, T. N., & Bao, Z. (2015). A skin-inspired organic digital mechanoreceptor. Science, 350(6258), 313–315.

Wu, H.-C., Benight, S. J., Chortos, A., Lee, W.-Y., Mei, J., To, J. W. F., Lu, C., He, M., Tok, J. B.-H., Chen, W.-Ch., & Bao, Z. (2014). A rapid and facile soft contact lamination method: evaluation of polymer semiconductors for stretchable transistors. Chemistry of Materials, 26(15), 4544–4551.

Yang, S. J., Mun, J., Kwon, J., Park, S., Bao, Z., & Park, S. (2019). Electronic Skin: Recent Progress and Future Prospects for Skin-Attachable Devices for Health Monitoring, Robotics, and Prosthetics. Advanced Materials, 31(48), 1904765.

Yersin, H., Rausch, A. F., Czerwieniec, R., Hofbeck, T., & Fischer, T. (2011). The triplet state of organo-transition metal compounds: Triplet Harvesting and Singlet Harvesting for Efficient OLEDs. Coordination Chemistry Reviews, 255(21–22), 2622−2652.