Three-dimensional atomic force microscopy mapping at the solid-liquid interface with fast and flexible data acquisition
Söngen H, Nalbach M, Adam H, Kühnle A (2016)
Review of Scientific Instruments 87: 63704.
Zeitschriftenaufsatz
| Veröffentlicht | Englisch
Download
RevSciInstrum_87_2016_Söngen.pdf
1.47 MB
Autor*in
Söngen, HagenUniBi;
Nalbach, Martin;
Adam, Holger;
Kühnle, AngelikaUniBi
Einrichtung
Abstract / Bemerkung
We present the implementation of a three-dimensional mapping routine for probing solid-liquid interfaces using frequency modulation atomic force microscopy. Our implementation enables fast and flexible data acquisition of up to 20 channels simultaneously. The acquired data can be directly synchronized with commercial atomic force microscope controllers, making our routine easily extendable for related techniques that require additional data channels, e.g., Kelvin probe force microscopy. Moreover, the closest approach of the tip to the sample is limited by a user-defined threshold, providing the possibility to prevent potential damage to the tip. The performance of our setup is demonstrated by visualizing the hydration structure above the calcite (10.4) surface in water. Published by AIP Publishing.
Erscheinungsjahr
2016
Zeitschriftentitel
Review of Scientific Instruments
Band
87
Seite(n)
63704
Urheberrecht / Lizenzen
ISSN
0034-6748
eISSN
1089-7623
Page URI
https://pub.uni-bielefeld.de/record/2913785
Zitieren
Söngen H, Nalbach M, Adam H, Kühnle A. Three-dimensional atomic force microscopy mapping at the solid-liquid interface with fast and flexible data acquisition. Review of Scientific Instruments. 2016;87:63704.
Söngen, H., Nalbach, M., Adam, H., & Kühnle, A. (2016). Three-dimensional atomic force microscopy mapping at the solid-liquid interface with fast and flexible data acquisition. Review of Scientific Instruments, 87, 63704. https://doi.org/10.1063/1.4952954
Söngen, Hagen, Nalbach, Martin, Adam, Holger, and Kühnle, Angelika. 2016. “Three-dimensional atomic force microscopy mapping at the solid-liquid interface with fast and flexible data acquisition”. Review of Scientific Instruments 87: 63704.
Söngen, H., Nalbach, M., Adam, H., and Kühnle, A. (2016). Three-dimensional atomic force microscopy mapping at the solid-liquid interface with fast and flexible data acquisition. Review of Scientific Instruments 87, 63704.
Söngen, H., et al., 2016. Three-dimensional atomic force microscopy mapping at the solid-liquid interface with fast and flexible data acquisition. Review of Scientific Instruments, 87, p 63704.
H. Söngen, et al., “Three-dimensional atomic force microscopy mapping at the solid-liquid interface with fast and flexible data acquisition”, Review of Scientific Instruments, vol. 87, 2016, pp. 63704.
Söngen, H., Nalbach, M., Adam, H., Kühnle, A.: Three-dimensional atomic force microscopy mapping at the solid-liquid interface with fast and flexible data acquisition. Review of Scientific Instruments. 87, 63704 (2016).
Söngen, Hagen, Nalbach, Martin, Adam, Holger, and Kühnle, Angelika. “Three-dimensional atomic force microscopy mapping at the solid-liquid interface with fast and flexible data acquisition”. Review of Scientific Instruments 87 (2016): 63704.
Alle Dateien verfügbar unter der/den folgenden Lizenz(en):
Creative Commons Namensnennung 4.0 International Public License (CC-BY 4.0):
Volltext(e)
Name
RevSciInstrum_87_2016_Söngen.pdf
1.47 MB
Access Level
Open Access
Zuletzt Hochgeladen
2019-09-06T09:18:51Z
MD5 Prüfsumme
15fa1a81128b0b28077f1519e07d591a
Daten bereitgestellt von European Bioinformatics Institute (EBI)
2 Zitationen in Europe PMC
Daten bereitgestellt von Europe PubMed Central.
Quantitative atomic force microscopy.
Söngen H, Bechstein R, Kühnle A., J Phys Condens Matter 29(27), 2017
PMID: 28585517
Söngen H, Bechstein R, Kühnle A., J Phys Condens Matter 29(27), 2017
PMID: 28585517
Direct Imaging of Superwetting Behavior on Solid-Liquid-Vapor Triphase Interfaces.
Peng Y, Jin X, Zheng Y, Han D, Liu K, Jiang L., Adv Mater 29(45), 2017
PMID: 28869679
Peng Y, Jin X, Zheng Y, Han D, Liu K, Jiang L., Adv Mater 29(45), 2017
PMID: 28869679
32 References
Daten bereitgestellt von Europe PubMed Central.
AUTHOR UNKNOWN, 0
True atomic-resolution imaging of (1014) calcite in aqueous solution by frequency modulation atomic force microscopy.
Rode S, Oyabu N, Kobayashi K, Yamada H, Kuhnle A., Langmuir 25(5), 2009
PMID: 19437760
Rode S, Oyabu N, Kobayashi K, Yamada H, Kuhnle A., Langmuir 25(5), 2009
PMID: 19437760
AUTHOR UNKNOWN, 0
AUTHOR UNKNOWN, 0
Revealing molecular-level surface structure of amyloid fibrils in liquid by means of frequency modulation atomic force microscopy.
Fukuma T, Mostaert AS, Serpell LC, Jarvis SP., Nanotechnology 19(38), 2008
PMID: 21832569
Fukuma T, Mostaert AS, Serpell LC, Jarvis SP., Nanotechnology 19(38), 2008
PMID: 21832569
AUTHOR UNKNOWN, 0
Localizing chemical groups while imaging single native proteins by high-resolution atomic force microscopy.
Pfreundschuh M, Alsteens D, Hilbert M, Steinmetz MO, Muller DJ., Nano Lett. 14(5), 2014
PMID: 24766578
Pfreundschuh M, Alsteens D, Hilbert M, Steinmetz MO, Muller DJ., Nano Lett. 14(5), 2014
PMID: 24766578
Stabilization of Polar Step Edges on Calcite (10.4) by the Adsorption of Congo Red.
Momper R, Nalbach M, Lichtenstein K, Bechstein R, Kuhnle A., Langmuir 31(26), 2015
PMID: 26053526
Momper R, Nalbach M, Lichtenstein K, Bechstein R, Kuhnle A., Langmuir 31(26), 2015
PMID: 26053526
Atomic-scale distribution of water molecules at the mica-water interface visualized by three-dimensional scanning force microscopy.
Fukuma T, Ueda Y, Yoshioka S, Asakawa H., Phys. Rev. Lett. 104(1), 2010
PMID: 20366372
Fukuma T, Ueda Y, Yoshioka S, Asakawa H., Phys. Rev. Lett. 104(1), 2010
PMID: 20366372
Visualizing water molecule distribution by atomic force microscopy.
Kimura K, Ido S, Oyabu N, Kobayashi K, Hirata Y, Imai T, Yamada H., J Chem Phys 132(19), 2010
PMID: 20499982
Kimura K, Ido S, Oyabu N, Kobayashi K, Hirata Y, Imai T, Yamada H., J Chem Phys 132(19), 2010
PMID: 20499982
Spatial distribution of lipid headgroups and water molecules at membrane/water interfaces visualized by three-dimensional scanning force microscopy.
Asakawa H, Yoshioka S, Nishimura K, Fukuma T., ACS Nano 6(10), 2012
PMID: 23013290
Asakawa H, Yoshioka S, Nishimura K, Fukuma T., ACS Nano 6(10), 2012
PMID: 23013290
Water and 2-propanol structured on calcite (104) probed by frequency-modulation atomic force microscopy.
Imada H, Kimura K, Onishi H., Langmuir 29(34), 2013
PMID: 23945021
Imada H, Kimura K, Onishi H., Langmuir 29(34), 2013
PMID: 23945021
Three-dimensional hydration layer mapping on the (10.4) surface of calcite using amplitude modulation atomic force microscopy.
Marutschke C, Walters D, Walters D, Hermes I, Bechstein R, Kuhnle A., Nanotechnology 25(33), 2014
PMID: 25074402
Marutschke C, Walters D, Walters D, Hermes I, Bechstein R, Kuhnle A., Nanotechnology 25(33), 2014
PMID: 25074402
Three-dimensional imaging of short-range chemical forces with picometre resolution.
Albers BJ, Schwendemann TC, Baykara MZ, Pilet N, Liebmann M, Altman EI, Schwarz UD., Nat Nanotechnol 4(5), 2009
PMID: 19421216
Albers BJ, Schwendemann TC, Baykara MZ, Pilet N, Liebmann M, Altman EI, Schwarz UD., Nat Nanotechnol 4(5), 2009
PMID: 19421216
Imaging three-dimensional surface objects with submolecular resolution by atomic force microscopy.
Moreno C, Stetsovych O, Shimizu TK, Custance O., Nano Lett. 15(4), 2015
PMID: 25756297
Moreno C, Stetsovych O, Shimizu TK, Custance O., Nano Lett. 15(4), 2015
PMID: 25756297
Three-dimensional quantitative force maps in liquid with 10 piconewton, angstrom and sub-minute resolutions.
Herruzo ET, Asakawa H, Fukuma T, Garcia R., Nanoscale 5(7), 2013
PMID: 23235926
Herruzo ET, Asakawa H, Fukuma T, Garcia R., Nanoscale 5(7), 2013
PMID: 23235926
Molecular-scale quantitative charge density measurement of biological molecule by frequency modulation atomic force microscopy in aqueous solutions.
Umeda K, Kobayashi K, Oyabu N, Matsushige K, Yamada H., Nanotechnology 26(28), 2015
PMID: 26120025
Umeda K, Kobayashi K, Oyabu N, Matsushige K, Yamada H., Nanotechnology 26(28), 2015
PMID: 26120025
Molecular-scale investigations of structures and surface charge distribution of surfactant aggregates by three-dimensional force mapping.
Suzuki K, Kobayashi K, Oyabu N, Matsushige K, Yamada H., J Chem Phys 140(5), 2014
PMID: 24511965
Suzuki K, Kobayashi K, Oyabu N, Matsushige K, Yamada H., J Chem Phys 140(5), 2014
PMID: 24511965
Visualization of hydration layers on muscovite mica in aqueous solution by frequency-modulation atomic force microscopy.
Kobayashi K, Oyabu N, Kimura K, Ido S, Suzuki K, Imai T, Tagami K, Tsukada M, Yamada H., J Chem Phys 138(18), 2013
PMID: 23676061
Kobayashi K, Oyabu N, Kimura K, Ido S, Suzuki K, Imai T, Tagami K, Tsukada M, Yamada H., J Chem Phys 138(18), 2013
PMID: 23676061
AUTHOR UNKNOWN, 0
Nanoscale potential measurements in liquid by frequency modulation atomic force microscopy.
Kobayashi N, Asakawa H, Fukuma T., Rev Sci Instrum 81(12), 2010
PMID: 21198030
Kobayashi N, Asakawa H, Fukuma T., Rev Sci Instrum 81(12), 2010
PMID: 21198030
Kelvin probe force microscopy in nonpolar liquids.
Domanski AL, Sengupta E, Bley K, Untch MB, Weber SA, Landfester K, Weiss CK, Butt HJ, Berger R., Langmuir 28(39), 2012
PMID: 22946889
Domanski AL, Sengupta E, Bley K, Untch MB, Weber SA, Landfester K, Weiss CK, Butt HJ, Berger R., Langmuir 28(39), 2012
PMID: 22946889
AUTHOR UNKNOWN, 0
Probing charge screening dynamics and electrochemical processes at the solid-liquid interface with electrochemical force microscopy.
Collins L, Jesse S, Kilpatrick JI, Tselev A, Varenyk O, Okatan MB, Weber SA, Kumar A, Balke N, Kalinin SV, Rodriguez BJ., Nat Commun 5(), 2014
PMID: 24846328
Collins L, Jesse S, Kilpatrick JI, Tselev A, Varenyk O, Okatan MB, Weber SA, Kumar A, Balke N, Kalinin SV, Rodriguez BJ., Nat Commun 5(), 2014
PMID: 24846328
Modification of a commercial atomic force microscopy for low-noise, high-resolution frequency-modulation imaging in liquid environment.
Rode S, Stark R, Lubbe J, Troger L, Schutte J, Umeda K, Kobayashi K, Yamada H, Kuhnle A., Rev Sci Instrum 82(7), 2011
PMID: 21806185
Rode S, Stark R, Lubbe J, Troger L, Schutte J, Umeda K, Kobayashi K, Yamada H, Kuhnle A., Rev Sci Instrum 82(7), 2011
PMID: 21806185
Photothermal excitation setup for a modified commercial atomic force microscope.
Adam H, Rode S, Schreiber M, Kobayashi K, Yamada H, Kuhnle A., Rev Sci Instrum 85(2), 2014
PMID: 24593367
Adam H, Rode S, Schreiber M, Kobayashi K, Yamada H, Kuhnle A., Rev Sci Instrum 85(2), 2014
PMID: 24593367
Determining cantilever stiffness from thermal noise.
Lubbe J, Temmen M, Rahe P, Kuhnle A, Reichling M., Beilstein J Nanotechnol 4(), 2013
PMID: 23616942
Lubbe J, Temmen M, Rahe P, Kuhnle A, Reichling M., Beilstein J Nanotechnol 4(), 2013
PMID: 23616942
AUTHOR UNKNOWN, 0
AUTHOR UNKNOWN, 0
AUTHOR UNKNOWN, 0
AUTHOR UNKNOWN, 0
Free energy of adsorption of water and calcium on the [10 1 4] calcite surface.
Kerisit S, Parker SC., Chem. Commun. (Camb.) (1), 2003
PMID: 14737328
Kerisit S, Parker SC., Chem. Commun. (Camb.) (1), 2003
PMID: 14737328
Export
Markieren/ Markierung löschen
Markierte Publikationen
Web of Science
Dieser Datensatz im Web of Science®Quellen
PMID: 27370456
PubMed | Europe PMC
Suchen in