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Formation of Au and tetrapyridyl porphyrin complexes in superfluid helium

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posted on 2015-09-08, 10:30 authored by Cheng Feng, Elspeth Latimer, Daniel Spence, Aula M. A. A. Al Hindawi, Shem Bullen, Adrian Boatwright, Andrew M. Ellis, Shengfu Yang
Binary clusters containing a large organic molecule and metal atoms have been formed by the co-addition of 5,10,15,20-tetra(4-pyridyl)porphyrin (H2TPyP) molecules and gold atoms to superfluid helium nanodroplets, and the resulting complexes were then investigated by electron impact mass spectrometry. In addition to the parent ion H2TPyP yields fragments mainly from pyrrole, pyridine and methylpyridine ions because of the stability of their ring structures. When Au is co-added to the droplets the mass spectra are dominated by H2TPyP fragment ions with one or more Au atoms attached. We also show that by switching the order in which Au and H2TPyP are added to the helium droplets, different types of H2TPyP-Au complexes are clearly evident from the mass spectra. This study suggests a new route for the control over the growth of metal-organic compounds inside superfluid helium nanodroplets.

History

Citation

Physical Chemistry Chemical Physics, 2015, 17 (26), pp. 16699-16704

Author affiliation

/Organisation/COLLEGE OF SCIENCE AND ENGINEERING/Department of Chemistry

Version

  • AM (Accepted Manuscript)

Published in

Physical Chemistry Chemical Physics

Publisher

Royal Society of Chemistry

issn

1463-9076

eissn

1463-9084

Acceptance date

2015-06-04

Copyright date

2015

Available date

2016-06-04

Publisher version

http://pubs.rsc.org/en/Content/ArticleLanding/2015/CP/C5CP01844G#!divAbstract

Notes

The file associated with this record has a 12 month embargo and will become available on the 4th June 2016.

Language

en

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