Incorporation of well-dispersed sub-5-nm graphitic pencil nanodots into ordered mesoporous frameworks

  • Biao Kong
  • , Jing Tang
  • , Yueyu Zhang
  • , Tao Jiang
  • , Xingao Gong
  • , Chengxin Peng
  • , Jing Wei
  • , Jianping Yang
  • , Yongcheng Wang
  • , Xianbiao Wang
  • , Gengfeng Zheng
  • , Cordelia Selomulya
  • , Dongyuan Zhao

Research output: Contribution to journalArticlepeer-review

164 Scopus citations

Abstract

Over the past few decades the direct assembly of optical nanomaterials into ordered mesoporous frameworks has proved to be a considerable challenge. Here we propose the incorporation of ultrasmall (sub-5-nm) graphitic pencil nanodots into ordered mesoporous frameworks for the fabrication of optoelectronic materials. The nanodots, which were prepared from typical commercial graphite pencils by an electrochemical tailoring process, combine properties such as uniform size (∼3 nm), excellent dispersibility and high photoconversion efficiency (∼27%). These nanodots were incorporated into a variety of ordered mesoporous frameworks (TiO2, silica, carbon and silica-carbon materials) by co-assembly, driven by hydrogen bonding, with the frameworks' precursors. The resulting materials showed a high degree of ordering, and a sharp increase in their optical performance (for example, photocurrent density). We envisage that the large-scale synthesis of ultrasmall carbon nanodots and their incorporation into ordered mesoporous frameworks may facilitate the preparation of materials with a variety of optical properties.

Original languageEnglish
Pages (from-to)171-177
Number of pages7
JournalNature Chemistry
Volume8
Issue number2
DOIs
StatePublished - 1 Feb 2016
Externally publishedYes

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