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Landing-Energy-Controlled Surface Conformation of Electrosprayed Foldamer Molecules on Au(111)

Zhang, Shengming; Meier, Dennis; Lawes, Patrick 1; Zhao, Pengfei; Wang, Jinhua; Maurizot, Victor; Walz, Andreas; Huettig, Annette; Schlichting, Hartmut; Papageorgiou, Anthoula C.; Reichert, Joachim 2; Huc, Ivan; Barth, Johannes V. 3
1 Institut für Nanotechnologie (INT), Karlsruher Institut für Technologie (KIT)
2 Institut für Technologie und Management im Baubetrieb (TMB), Karlsruher Institut für Technologie (KIT)
3 Institut für Regelungs- und Steuerungssysteme (IRS), Karlsruher Institut für Technologie (KIT)

Abstract (englisch):

Preserving the structural integrity of biomimetic foldamers upon surface deposition is essential for their integration into functional molecular architectures and devices. When assembled in well-ordered monolayers, these molecules can exhibit distinctive characteristics. In this study, we investigate the electrospray-controlled ion beam deposition of foldamer molecules in an ultrahigh vacuum (UHV) environment on an Au(111) surface and examine how their conformation depends on the mean landing energy during deposition. At a low mean landing energy of about 0.6 eV, intact foldamers are observed on the surface, whereas higher landing energies predominantly result in unfolded molecules and partially folded states. Additionally, annealing of the substrate converts folded conformations into unfolded ones. These results highlight the importance of soft-landing conditions to maintain hydrogen-bond-stabilized architectures on surfaces, offering a model platform for studying the structure–function relationship of surface-supported thermolabile biomolecules.


Verlagsausgabe §
DOI: 10.5445/IR/1000189993
Veröffentlicht am 27.01.2026
Cover der Publikation
Zugehörige Institution(en) am KIT Institut für Nanotechnologie (INT)
Institut für Regelungs- und Steuerungssysteme (IRS)
Institut für Technologie und Management im Baubetrieb (TMB)
Publikationstyp Zeitschriftenaufsatz
Publikationsjahr 2026
Sprache Englisch
Identifikator ISSN: 1936-0851, 1936-086X
KITopen-ID: 1000189993
Erschienen in ACS Nano
Verlag American Chemical Society (ACS)
Vorab online veröffentlicht am 18.01.2026
Schlagwörter electrospray ionization, scanning tunneling microscopy, foldamer molecules, landing energy, adsorption
Nachgewiesen in OpenAlex
Web of Science
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