Msrg (1)

Menny Shalom

Senior Academic

From Millimeter to Subnanometer

Vapor–Solid Deposition of Carbon Nitride Hierarchical Nanostructures Directed by Supramolecular Assembly

Jingsan Xu, Hong Wang, Chao Zhang, Xiaofei Yang, Shaowen Cao, Jiaguo Yu, Menny Shalom

Shape and nanostructure control has great potential to enable graphitic carbon nitride (C3N4) structures with new properties and functionalities. In this work, a new type of hierarchically structured nanoporous C3N4 is introduced. The C3N4 exhibits unique, edelweiss-like morphology, with components ranging from millimeter-sized bunches to subnanometer-thick layers. A one-step vapor–solid deposition approach using supramolecular aggregates as the precursor is carried out to accomplish the growth. Supramolecular pre-association plays a crucial role in achieving this nanostructure by directing the vaporization and deposition processes. Furthermore, very small C3N4 quantum dots can be readily acquired by bath sonication of the thin layers in water. The supramolecular preorganization growth strategy developed herein may provide a general methodology in the design of advanced photoelectric materials with broad applications in energy conversion and storage.

Publication language English
Pages 8426-8430
Volume 56
Issue number 29
Publication status Published - 10.07.2017

Keywords

graphitic carbon nitrides
hierarchical nanostructures
supramolecular assembly
vapor–solid growth

ASJC Scopus subject areas

Catalysis
General Chemistry
Access to Document
10.1002/anie.201611946
Other files and links
Link to publication in Scopus