Nobre Borba, Katiuscia M.Guerreiro da Trindade, LetíciaZanchez, LetíciaPergher, SibeleDíaz, UrbanoRey Garcia, FernandoBernardo-Gusmão, Katia2025-02-112025-02-112025-03-010920-5861https://riunet.upv.es/handle/10251/214388[EN] The use of MCM-41 led to the development of a silylated hybrid material (MS), which in turn played a crucial role in obtaining semiconducting polyphenylacetylene, with a conductivity of 8.13 x 10-5 S m- 1. MS was also responsible for reducing the polyphenylacetylene band gap from 2.13 eV to 1.83 eV. When used in a capacitor, polyphenylacetylene exhibited stability after 3000 charge/discharge cycles and a capacitance seven times higher than that of poly(o-methoxyaniline) (POMA) polymer.Reconocimiento - No comercial - Sin obra derivada (by-nc-nd)MCM-41Semiconducting polyphenylacetylenePOMACapacitorNovel preparation of polyphenylacetylene semiconductor: Potential application in supercapacitorsArtículo10.1016/j.cattod.2024.115134Embargado