Literature DB >> 34269047

Enhancement of Scattering and Near Field of TiO2-Au Nanohybrids Using a Silver Resonator for Efficient Plasmonic Photocatalysis.

Maosong Liu1, Xin Jin2, Shun Li1,3, Jean-Baptiste Billeau2, Tingyu Peng1, Henan Li1, Long Zhao1, Zuotai Zhang4, Jerome P Claverie5, Luca Razzari2, Jianming Zhang1.   

Abstract

Recently, localized surface plasmon resonances (SPRs) of metallic nanoparticles (NPs) have been widely used to construct plasmonic nanohybrids for heterogeneous photocatalysis. For example, the combination of plasmonic Au NPs and TiO2 provides pure TiO2 visible-light activity. The SPR effect induces an electric field and consequently enhances light scattering and absorption, favoring the transfer of photon energy to hot carriers for catalytic reactions. Numerous approaches have been dedicated to the improvement of SPR absorption in photocatalysts. Here, we have designed a core@shell-satellite nanohybrid catalyst whereby an Ag NP core, as a plasmonic resonator featuring unique dual functions of strong scattering and near-field enhancement, is encapsulated by SiO2 and TiO2 layers in sequence, with Au NPs on the outer surface, Ag@SiO2@TiO2-Au, for efficient plasmonic photocatalysis. By varying the size and number of Ag NP cores, the Au SPR can be tailored over the visible and near-infrared spectral region to reabsorb the scattered photons. In the presence of the Ag core, the incident light is efficiently confined in the reaction suspension by undergoing multiple scattering, thus leading to an increase of the optical path to the photocatalysis. Moreover, using numerical analysis and experimental verifications, we demonstrate that the Ag core also induces a strong near-field enhancement at the Au-TiO2 interface via SPR coupling with Au. Consequently, the activity of the TiO2-Au plasmonic photocatalyst is significantly enhanced, resulting in a high H2 production rate under visible light. Thus, the design of a single structural unit with strong scattering and field enhancement, induced by a plasmonic resonator, is a highly effective strategy to boost photocatalytic activity.

Entities:  

Keywords:  Au nanoparticle; near field; photocatalysis; plasmon; scattering

Year:  2021        PMID: 34269047     DOI: 10.1021/acsami.1c07410

Source DB:  PubMed          Journal:  ACS Appl Mater Interfaces        ISSN: 1944-8244            Impact factor:   9.229


  2 in total

1.  A well-defined S-g-C3N4/Cu-NiS heterojunction interface towards enhanced spatial charge separation with excellent photocatalytic ability: synergetic effect, kinetics, antibacterial activity, and mechanism insights.

Authors:  Haya A Abubshait; Shahid Iqbal; Samar A Abubshait; Mohammed T Alotaibi; Norah Alwadai; Nada Alfryyan; Hashem O Alsaab; Nasser S Awwad; Hala A Ibrahium
Journal:  RSC Adv       Date:  2022-01-25       Impact factor: 3.361

Review 2.  Electrospun Ceramic Nanofibers for Photocatalysis.

Authors:  Yan Xing; Jing Cheng; Heping Li; Dandan Lin; Yuting Wang; Hui Wu; Wei Pan
Journal:  Nanomaterials (Basel)       Date:  2021-11-27       Impact factor: 5.076

  2 in total

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