Molecule-Latches in Atomic Scale Surface Logic Gates Constructed on Si(100)H
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Publisher
Springer International Publishing
Link
http://link.springer.com/content/pdf/10.1007/978-3-319-51847-3_10
Reference10 articles.
1. Kawai, H., Ample, F., Qing, W., Yeo, Y.K., Saeys, M., Joachim, C.: Dangling bond logic gates on the Si(100)–(2x1)-H surface. J. Phys. Cond. Mat. 24, 095011 (2012)
2. Schofield, S.R., Warschkow, O., Belcher, D.R., Rahnejat, K.A., Radny, M.W., Smith, P.V.: Phenyl attachment to Si(001) via STM manipulation of acetophenone. Phys. Chem. C 117, 5736 (2013)
3. Neucheva, O.A., Ample, F., Joachim, C.: Mechanical conformation switching of a single pentacene molecule on Si(100)-2x1. J. Phys. Chem. C 49, 117 (2013)
4. Godlewski, S., Kawai, H., Kolmer, M., Zuzak, R., Echevarren, A., Joachim, C., Szymonski, M., Saeys, M.: Single molecule rotational switch on a dangling bond dimer bearing. ACS Nano (2016, in press)
5. Nickel, A., Ohmann, R., Meyer, J., Grisolia, M., Joachim, C., Moresco, F., Cuniberti, G.: Moving nanostructures: pulse-induced positioning of supramolecular assemblies. ACS Nano 7, 191 (2013)
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1. Atomically Precise Manufacturing of Silicon Electronics;ACS Nano;2024-02-20
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