Dramatic femtosecond nonlinear absorption at a strongly coupled porphyrin-graphene nanoconjugate

Lulu Fu, Yan Fang, Zihao Guan, Zhiyuan Wei, Rui Yang, Naying Shan, Fang Liu, Yang Zhao, Mingfei Zhang, Zhipeng Huang, Mark G. Humphrey, Chi Zhang*

*Corresponding author for this work

    Research output: Contribution to journalArticlepeer-review

    11 Citations (Scopus)

    Abstract

    Edge-functionalization of graphene is emerging as a powerful chemical method for the construction of π-delocalized highly-planar graphene nanoconjugates that are not accessible through surface-supported syntheses. Herein, a graphene-porphyrin nanoconjugate via a robust pyrazine (pz) linkage has been obtained by condensing 2,3-diamino-5,10,15,20-tetraphenylporphyrin (DA-TPP) with ortho-quinone (o-quinone) moieties at edge sites of graphene oxide (GO). The as-prepared GO-pz-TPP exhibits an intense absorption extending from 375 to 900 nm and a high quenching yield (98%) of fluorescence, indicating a strong electronic coupling effect between GO and TPP units. GO-pz-TPP displays strong nonlinear optical (NLO) absorption and giant NLO coefficients with 800 and 1,030 nm fs laser, in sharp contrast to traditional graphene-porphyrin nanohybrids only NLO-active towards ns laser. Such a dramatic NLO performance towards femtosecond pulsed laser has not been achieved in any carbon-chromophores nanohybridized materials to date. This work validates the π-extended edge-functionalization strategy as a means to tune the NLO properties of graphene, thereby providing a new paradigm for the assembly of versatile optoelectronic materials. [Figure not available: see fulltext.].

    Original languageEnglish
    Pages (from-to)5900-5908
    Number of pages9
    JournalNano Research
    Volume16
    Issue number4
    DOIs
    Publication statusPublished - 2023

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