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- Sauerbrey_equation abstract "The Sauerbrey equation was developed by G. Sauerbrey in 1959 as a method for correlating changes in the oscillation frequency of a piezoelectric crystal with the mass deposited on it. He simultaneously developed a method for measuring the characteristic frequency and its changes by using the crystal as the frequency determining component of an oscillator circuit. His method continues to be used as the primary tool in quartz crystal microbalance experiments for conversion of frequency to mass and is valid in nearly all applications. The equation is derived by treating the deposited mass as though it were an extension of the thickness of the underlying quartz. Because of this, the mass to frequency correlation (as determined by Sauerbrey’s equation) is largely independent of electrode geometry. This has the benefit of allowing mass determination without calibration, making the set-up desirable from a cost and time investment standpoint.The Sauerbrey equation is defined as:.Equation 1 – Sauerbrey’s equation – Resonant frequency (Hz)– Frequency change (Hz)– Mass change (g)– Piezoelectrically active crystal area (Area between electrodes, cm2) – Density of quartz (= 2.648 g/cm3)– Shear modulus of quartz for AT-cut crystal (= 2.947x1011 g·cm-1·s-2)Because the film is treated as an extension of thickness, Sauerbrey’s equation only applies to systems in which the following three conditions are met: the deposited mass must be rigid, the deposited mass must be distributed evenly and the frequency change < 0.02.If the change in frequency is greater than 2%, that is, > 0.02, the Z-match method must be used to determine the change in mass.The formula for the Z-match method is:Equation 2 – Z-match method– Frequency of loaded crystal (Hz)– Frequency of unloaded crystal, i.e. Resonant frequency (Hz)– Frequency constant for AT-cut quartz crystal (1.668x1013Hz.Å)– Mass change (g)– Piezoelectrically active crystal area (Area between electrodes, cm2)– Density of quartz (= 2.648 g/cm3)– – Density of the film (Varies: units are g/cm3)– Shear modulus of quartz (= 2.947x1011 g·cm-1·s-2) – Shear modulus of film (Varies: units are g·cm-1·s-2)".
- Sauerbrey_equation wikiPageID "3687954".
- Sauerbrey_equation wikiPageRevisionID "603820175".
- Sauerbrey_equation hasPhotoCollection Sauerbrey_equation.
- Sauerbrey_equation subject Category:Electrical_phenomena.
- Sauerbrey_equation subject Category:Transducers.
- Sauerbrey_equation subject Category:Weighing_instruments.
- Sauerbrey_equation type Artifact100021939.
- Sauerbrey_equation type Device103183080.
- Sauerbrey_equation type ElectricalDevice103269401.
- Sauerbrey_equation type Instrument103574816.
- Sauerbrey_equation type Instrumentality103575240.
- Sauerbrey_equation type Object100002684.
- Sauerbrey_equation type PhysicalEntity100001930.
- Sauerbrey_equation type Transducer104470953.
- Sauerbrey_equation type Transducers.
- Sauerbrey_equation type WeighingInstruments.
- Sauerbrey_equation type Whole100003553.
- Sauerbrey_equation comment "The Sauerbrey equation was developed by G. Sauerbrey in 1959 as a method for correlating changes in the oscillation frequency of a piezoelectric crystal with the mass deposited on it. He simultaneously developed a method for measuring the characteristic frequency and its changes by using the crystal as the frequency determining component of an oscillator circuit.".
- Sauerbrey_equation label "Sauerbrey equation".
- Sauerbrey_equation label "Sauerbrey-vergelijking".
- Sauerbrey_equation sameAs Sauerbrey-vergelijking.
- Sauerbrey_equation sameAs m.09vhpt.
- Sauerbrey_equation sameAs Q2804046.
- Sauerbrey_equation sameAs Q2804046.
- Sauerbrey_equation sameAs Sauerbrey_equation.
- Sauerbrey_equation wasDerivedFrom Sauerbrey_equation?oldid=603820175.
- Sauerbrey_equation isPrimaryTopicOf Sauerbrey_equation.