Direct synthesis of a semiconductive double-helical phosphorus allotrope in a metal-organic framework
Abstract
Abstract There remains much ambiguity regarding the structure of red phosphorus. We report the adsorption and photo-polymerisation of P4 molecules encapsulated in an indium(III)-based metal-organic framework to afford a double-helical chain composite comprising of [P8] units. The similarity between the Raman spectrum of bulk red phosphorus and of the metal-organic framework – (P8)n adduct suggests the presence of such helical chains in the structure of amorphous red phosphorus. This provides crystallographic evidence of the structural building blocks of the red phosphorus allotrope stabilized within the pores of a metal-organic host. The (P8)n inclusion compound is an air-stable semiconductor with a band gap of 2.3 eV, which is relevant for gas detection and photo-catalysis. We demonstrate that this phosphorus adduct demonstrates a 10-fold increase in conversion in the oxidation of methyl orange dye compared with the parent metal-organic framework material.
Article Details
Authors (16)
Sergei A. Sapchenko
Rodion V. Belosludov
Inigo J. Vitoria-Irezabal
Ivan da Silva
ISIS Neutron and Muon Facility
Xi Chen
George F. S. Whitehead
John Maddock
Louise S. Natrajan
Department of Chemistry
Meredydd Kippax-Jones
Department of Chemistry
Dukula De Alwis Jayasinghe
Carlo Bawn
Daniil M. Polyukhov
Yinlin Chen
Department of Chemistry
Vladimir P. Fedin
China-Russia Belt and Road Joint Laboratory for Intelligent Chemistry and Advanced Materials of Liaoning Province, School of Chemistry
Sihai Yang
Peking University , , ,
Martin Schröder
Department of Chemistry