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Rasterkraftmikroskopie×Thermogravimetrische Analyse×
FachgebietMaterialwissenschaftMaterialwissenschaft
FamilieProcess / pipelineProcess / pipeline
Entstehungsjahr19861960s
UrheberGerd BinnigWilliam W. Wendlandt
TypImaging techniqueCharacterization method
Wegweisende QuelleBinnig, G., Quate, C. F., & Gerber, C. (1986). Atomic force microscope. Physical Review Letters, 56(9), 930-933. DOI ↗Wendlandt, W. W. (1986). Thermal Analysis (3rd ed.). John Wiley & Sons. link ↗
AliasnamenAFM, scanning probe microscopy, nanoindentation microscopyTGA, thermal gravimetry, thermogravimetry
Verwandt33
ZusammenfassungAtomic Force Microscopy (AFM) is a scanning probe technique that measures nanoscale surface topography and mechanical properties by monitoring interactions between a sharp cantilever tip and a sample surface. Invented by Gerd Binnig in 1986 as an extension of scanning tunneling microscopy, AFM requires neither electrical conductivity nor vacuum operation, making it applicable to virtually any material. It provides three-dimensional topographic maps with sub-nanometer vertical resolution and lateral resolution approaching nanometers, along with simultaneous measurements of mechanical, electrical, and chemical properties.Thermogravimetric Analysis (TGA) is a thermal characterization technique that continuously measures mass loss or gain of a material as a function of temperature (or time at constant temperature). Developed systematically by William Wendlandt and colleagues in the 1960s, TGA identifies thermal transitions (evaporation, decomposition, oxidation, reduction) and quantifies composition of polymers, pharmaceuticals, ceramics, and other materials. The derivative signal (DTG) highlights transition temperatures. When combined with gas analysis (MS, FTIR), decomposition products are identified.
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ScholarGateMethoden vergleichen: Atomic Force Microscopy · Thermogravimetric Analysis. Abgerufen am 2026-06-19 von https://scholargate.app/de/compare