Author:
Shih Po-Yuan,Cipriani Maicol,Hermanns Christian Felix,Oster Jens,Edinger Klaus,Gölzhäuser Armin,Ingólfsson Oddur
Abstract
Motivated by the potential role of molybdenum in semiconductor materials, we present a combined theoretical and experimental gas-phase study on dissociative electron attachment (DEA) and dissociative ionization (DI) of Mo(CO)6in comparison to focused electron beam-induced deposition (FEBID) of this precursor. The DEA and DI experiments are compared to previous work, differences are addressed, and the nature of the underlying resonances leading to the observed DEA processes are discussed in relation to an earlier electron transmission study. Relative contributions of individual ionic species obtained through DEA and DI of Mo(CO)6and the average CO loss per incident are calculated and compared to the composition of the FEBID deposits produced. These are also compared to gas phase, surface science and deposition studies on W(CO)6and we hypothesize that reductive ligand loss through electron attachment may promote metal–metal bond formation in the deposition process, leading to further ligand loss and the high metal content observed in FEBID for both these compounds.
Funder
University of Iceland Research Fund
H2020 Marie Skłodowska-Curie Actions
Icelandic Centre for Research
Subject
Electrical and Electronic Engineering,General Physics and Astronomy,General Materials Science
Cited by
3 articles.
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