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Puedes apoyarme participando en mi rifa solidaria en el siguiente link! Dentro del forms encontraras mas información

https://forms.gle/zza4cnFqtv3SYGmU6

Además, estoy realizando un crowdfunding para captar fondos donde cuento a mas detalle mi historia en el siguiente link!

https://gofund.me/75e5631d

Si te interesa apoyar esta causa sin participar en la rifa puedes hacerlo mediante las siguientes cuentas a nombre de Gustavo Campi

Banco Pichincha 👉 2203560371 Banco Pacifico 👉 1069652357 Cedula 0928346212

NanoScienceSummerReferences # NANOPHYS REFERENCES

[1] Ceccatto, A., Freiberger, E. M., Waleska-Wellnhofer, N. J., Jaekel, S., Mowbray, D. J., Papp, C., ... & de Siervo, A. (2024). Engineering large nanoporous networks with size and shape selected by appropriate precursors. Carbon, 118945.

[2] Larsen, A. H., Mortensen, J. J., Blomqvist, J., Castelli, I. E., Christensen, R., Dułak, M., ... & Jacobsen, K. W. (2017). The atomic simulation environment—a Python library for working with atoms. Journal of Physics: Condensed Matter, 29(27), 273002.\

[3] Enkovaara, J., Rostgaard, C., Mortensen, J. J., Chen, J., Dułak, M., Ferrighi, L., ... & Jacobsen, K. W. (2010). Electronic structure calculations with GPAW: a real-space implementation of the projector augmented-wave method. Journal of physics: Condensed matter, 22(25), 253202.

[4] Perdew, J. P., Burke, K., & Ernzerhof, M. (1996). Generalized gradient approximation made simple. Physical review letters, 77(18), 3865.

[5] Grimme, S., Antony, J., Ehrlich, S., & Krieg, H. (2010). A consistent and accurate ab initio parametrization of density functional dispersion correction (DFT-D) for the 94 elements H-Pu. The Journal of chemical physics, 132(15).

[6] Gritsenko, O., van Leeuwen, R., van Lenthe, E., & Baerends, E. J. (1995). Self-consistent approximation to the Kohn-Sham exchange potential. Physical Review A, 51(3), 1944.

[7] Lyon, K., Preciado-Rivas, M. R., Zamora-Ledezma, C., Despoja, V., & Mowbray, D. J. (2020). LCAO-TDDFT-k-ω: Spectroscopy in the optical limit. Journal of Physics: Condensed Matter, 32(41), 415901.

[8] Tersoff, J., & Hamann, D. R. (1985). Theory of the scanning tunneling microscope. Physical Review B, 31(2), 805.

[9] Larsen, A. H., Mortensen, J. J., Blomqvist, J., Castelli, I. E., Christensen, R., Dułak, M., ... & Jacobsen, K. W. (2017). The atomic simulation environment—a Python library for working with atoms. Journal of Physics: Condensed Matter, 29(27), 273002.

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