1992
DOI: 10.1007/bf01426368
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Photoionization studies of free sodium ammonia clusters

Abstract: Free sodium ammonia clusters Na (NH3) n up to n = 45 were generated in a pickup source by injecting a beam of neutral sodium atoms into the expansion zone of a piezo driven pulsed nozzle. The clusters thus formed are studied by one-photon ionisation in the region of 266 nm to 520 nm, time-of-flight mass spectrometry as well as photoelectron spectrometry. Ionisation thresholds for clusters up to n = 18 and dissociation energies for the neutral Na(NH3) n up to n = 6 are reported.

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Cited by 51 publications
(78 citation statements)
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“…The Na+(H 2 0) and Na +(NH 3 ) stretching frequencies are in excellent agreement with the values found by Schulz et al [14] and Nitsch et al [15], and the Na+(H 2 0) frequency is also very close to that calculated previously [9,23]. A summary of all the vibrational frequencies measured in this study may be found in Table 1.…”
Section: Resultssupporting
confidence: 91%
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“…The Na+(H 2 0) and Na +(NH 3 ) stretching frequencies are in excellent agreement with the values found by Schulz et al [14] and Nitsch et al [15], and the Na+(H 2 0) frequency is also very close to that calculated previously [9,23]. A summary of all the vibrational frequencies measured in this study may be found in Table 1.…”
Section: Resultssupporting
confidence: 91%
“…However, we have not accurately determined a for the complexes in this study. The adiabatic IEs for Na(H 2 0) and Na(NH 3 ) are, nevertheless, in excellent agreement with values obtained from PIE spectra by Schulz et al [14] and Nitsch et al [15] and with calculated values [10,11,23], while the adiabatic IEs of the deuterated complexes are shifted = 70 em-1 to lower frequency because of the changes in their zero point vibrational energies.…”
Section: Resultssupporting
confidence: 89%
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“…18 The pickup to argon and various other clusters was also employed for studies of photochemistry of molecules in cluster environment, [19][20][21][22] and in general for investigation of various mixed molecular clusters. 23,24 Despite these widespread applications of the pickup technique and the earlier studies of this process, [2][3][4] many questions remain opened concerning the mechanism of the pickup process itself, and sticking, migration and coagulation of the molecules on/in the host clusters -especially for other cluster species than helium nanodroplets. This paper contributes to the detailed understanding of this technique by investigating the pickup process of various molecules (HBr, H 2 O, CH 3 OH) and argon atoms on large argon clusters.…”
Section: Introductionmentioning
confidence: 99%