0000000000860864

AUTHOR

Christoph Gerber

showing 3 related works from this author

DOMAIN AND MOLECULAR SUPERLATTICE STRUCTURE OF DODECANETHIOL SELF-ASSEMBLED ON AU(111)

1994

Annealed organic monolayers of dodecanethiol (CH3(CH2)11SH) self-assembled on Au(111) have been investigated by scanning tunnelling microscopy. By using very high tunnelling resistances (TOMEGA) we find evidence of well-ordered molecular domains at room temperature and observe two different types of c(4 x 2) superlattice structures with the same rectangular unit cell. In contrast to theoretical calculations each unit cell contains four inequivalent molecules. Possible reasons for this discrepancy are discussed.

CrystallographySuperstructureMaterials scienceSuperlatticeMonolayerDomain (ring theory)MicroscopyGeneral Physics and AstronomyMoleculeNanotechnologyQuantum tunnellingSelf assembled
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Using 81Kr and Noble Gases to Characterize and Date Groundwater and Brines in the Baltic Artesian Basin on the One-Million-Year Timescale

2017

Analyses for $^{81}$Kr and noble gases on groundwater from the deepest aquifer system of the Baltic Artesian Basin (BAB) were performed to determine groundwater ages and uncover the flow dynamics of the system on a timescale of several hundred thousand years. We find that the system is controlled by mixing of three distinct water masses: Interglacial or recent meteoric water $(\delta^{18}\text{O} \approx -10.4\unicode{x2030})$ with a poorly evolved chemical and noble gas signature, glacial meltwater $(\delta^{18}\text{O} \leq -18\unicode{x2030})$ with elevated noble gas concentrations, and an old, high-salinity brine component $(\delta^{18}\text{O} \geq -4.5\unicode{x2030}, \geq 90 \text{g …

geographyWater massgeography.geographical_feature_category010504 meteorology & atmospheric sciences530 PhysicsGeochemistryFOS: Physical sciencesNoble gasAquifer010502 geochemistry & geophysics01 natural sciencesGeophysics (physics.geo-ph)Physics - GeophysicsGeochemistry and Petrology550 Earth sciences & geologyInterglacialMeteoric waterGlacial periodMeltwaterGeomorphologyGeologyGroundwater0105 earth and related environmental sciences
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Deformation-Free Topography from Combined Scanning Force and Tunnelling Experiments

1993

We show that by measuring force and stiffness on a constant-current scanning tunnelling microscopy (STM) contour a deformation-free topography can be extracted. With reference to mono- and bicomponent self-assembled monolayers, we find that the characteristic depression pattern and the protrusions on a multicomponent film found in STM are to a great extent due to electronic effects.

Materials sciencebusiness.industryELECTRON MICROSCOPY DETERMINATIONS (INC SCANNING TUNNELING MICROSCOPYMECHANICAL ANDGeneral Physics and AstronomyStiffnessSOLID-SOLID INTERFACES (INC BICRYSTALS)Deformation (meteorology)METHODS)law.inventionOpticslawMicroscopyMonolayermedicineACOUSTICAL PROPERTIES OF SOLID SURFACES AND INTERFACESThin filmComposite materialScanning tunneling microscopemedicine.symptombusinessQuantum tunnellingEurophysics Letters (EPL)
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