A gas–liquid interface synthesis in polyoxometalate chemistry: potential bag filter for volatile organic amines

2Citations
Citations of this article
6Readers
Mendeley users who have this article in their library.

Abstract

Abstract: Diffusion of piperidine and pyridine into an acidified aqueous solution of Na 2MoO 4, yield compounds [ (pipH) 4] [ Mo 8O 26] · 4 H 2O (pip = piperidine = C 5H 11N) (1) and [ (pyH) 4] [ Mo 8O 26] (py = pyridine = C 5H 5N) (2), respectively. Compound 1 possesses supramolecular 3-D network and the relevant connectivity pattern generates channels of approximate dimensions of 10.76 × 11.57 Å ´ 2, in which the piperidinium cations are located as guests. Multidimensional supramolecular frameworks (3-D in compound 1 and 2-D layer type of network in compound 2) have been made possible, as the organic cations and polyoxometalate (POM) anions are glued together by significant hydrogen bonding interactions. The synthesis of compounds 1 and 2 provides a unique ‘gas–liquid’ synthetic route in POM chemistry that result in organic–inorganic hybrid materials with structural diversities. This synthetic approach, first time in POM chemistry, can be described as a potential bag filter for volatile organic amines. Graphical Abstract: Synopsis: Diffusion of piperidine and pyridine vapours into acidified aqueous molybdate solution leads to the formation of ion pair compounds having supramolecular framework structures. These organic amines are trapped as guest or as part of the framework making the present system a potential bag filter for the volatile organic amines.

Cite

CITATION STYLE

APA

Shivaiah, V., Kumar, N. T., & Das, S. K. (2018). A gas–liquid interface synthesis in polyoxometalate chemistry: potential bag filter for volatile organic amines. Journal of Chemical Sciences, 130(4). https://doi.org/10.1007/s12039-018-1435-2

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free