| Literature DB >> 27140654 |
Matthias Stöter1, Sebastian Gödrich2, Patrick Feicht1, Sabine Rosenfeldt3, Herbert Thurn4, Jens W Neubauer5, Maximilian Seuss5, Peter Lindner6, Hussein Kalo1, Michael Möller1, Andreas Fery5,7, Stephan Förster3, Georg Papastavrou8, Josef Breu9.
Abstract
Ordered heterostructures of layered materials where interlayers with different reactivities strictly alternate in stacks offer predetermined slippage planes that provide a precise route for the preparation of bilayer materials. We use this route for the synthesis of a novel type of reinforced layered silicate bilayer that is 15 % stiffer than the corresponding monolayer. Furthermore, we will demonstrate that triggering cleavage of bilayers by osmotic swelling gives access to a generic toolbox for an asymmetrical modification of the two vis-à-vis standing basal planes of monolayers. Only two simple steps applying arbitrary commercial polycations are needed to obtain such Janus-type monolayers. The generic synthesis route will be applicable to many other layered compounds capable of osmotic swelling, rendering this approach interesting for a variety of materials and applications.Entities:
Keywords: atomic force microscopy; hybrid materials; nanomaterials; silicate; thin layers
Year: 2016 PMID: 27140654 DOI: 10.1002/anie.201601611
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336