Projects of affiliated persons per year
Abstract
Molecular beam techniques are a key to many experiments in physical chemistry and quantum optics. In particular, advanced matter-wave experiments with high-mass molecules profit from the availability of slow, neutral and mass-selected molecular beams that are sufficiently stable to remain intact during laser heating and photoionization mass spectrometry. We present experiments on the photostability with molecular libraries of tailored oligoporphyrins with masses up to 25 000 Da. We compare two fluoroalkylsulfanyl-functionalized libraries based on two different molecular cores that offer the same number of anchor points for functionalization but differ in their geometry and electronic properties. A pentaporphyrin core stabilizes a library of chemically well-defined molecules with more than 1600 atoms. They can be neutrally desorbed with velocities as low as 20 m/s and efficiently analyzed in photoionization mass spectrometry.
| Original language | English |
|---|---|
| Pages (from-to) | 235-239 |
| Number of pages | 5 |
| Journal | Journal of Mass Spectrometry |
| Volume | 50 |
| Issue number | 1 |
| Early online date | 19 Jan 2015 |
| DOIs | |
| Publication status | Published - Jan 2015 |
Funding
Our work has been supported by the Fonds zur Forderung der wissenschaftlichen Forschung programmes (Z149-N16) and Complex Quantum Systems (W1210-3), the European Commission in the project NANOQUESTFIT (304 886), the Swiss National Science Foundation, the National Centre of Competence in Research 'Nanoscale Science' and the Swiss Nanoscience Institute.
Austrian Fields of Science 2012
- 104015 Organic chemistry
- 103026 Quantum optics
- 104017 Physical chemistry
- 103006 Chemical physics
Keywords
- macromolecular beams; laser desorption; photoionization; TOF-MS; molecular libraries
- Molecular libraries
- Photoionization
- TOF-MS
- Laser desorption
- Macromolecular beams
Fingerprint
Dive into the research topics of 'Stability of high-mass molecular libraries: the role of the oligoporphyrin core'. Together they form a unique fingerprint.Projects
- 3 Finished
-
NANOQUESTFIT: Nanoparticles in Quantum Experiments: Exploring the scientific basis of future innovative quantum technologies
Arndt, M. (Project Lead) & Theussl, L. (Admin)
1/01/13 → 31/12/15
Project: Research funding
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Quantum Interference with clusters and complex molecules
Arndt, M. (Project Lead)
1/01/09 → 31/12/13
Project: Research funding
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CoQuS: Complex Quantum Systems
Aspelmeyer, M. (Project Lead), Arndt, M. (Co-Lead) & Paulovics, V. (Admin)
1/10/07 → 31/12/20
Project: Research funding
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