Measuring Devices Based on Molecular-Electronic Transducers

The basic principles of operation of the sensors based on molecular-electronic transducers (METs) are described. The review of investigations of physical processes into MET and their operating characteristics are considered. Modern MET manufacturing technologies and the production methods and the new applications of planar microelectronic METs are discussed. An overview of devices and systems based on the METs is given.

[1]  V. G. Krishtop Experimental modeling of the temperature dependence of the transfer function of rotational motion sensors based on electrochemical transducers , 2014, Russian Journal of Electrochemistry.

[2]  A. D. Davydov,et al.  Theoretical study of the effect of electrochemical cell inclination on the limiting diffusion current , 2002 .

[3]  Vadim M. Agafonov,et al.  Self-Noise of the MET Angular Motion Seismic Sensors , 2015, J. Sensors.

[4]  Vadim M. Agafonov,et al.  A Low-Noise DC Seismic Accelerometer Based on a Combination of MET/MEMS Sensors , 2014, Sensors.

[5]  V. A. Kozlov,et al.  Phase-response characteristics of the transfer function of a spatially limited electrochemical cell , 2007 .

[6]  V. A. Kozlov,et al.  Self-noise of molecular electronic transducers , 2003 .

[7]  P. Willmore,et al.  Manual of seismological observatory practice , 1979 .

[8]  V. M. Agafonov,et al.  Technological principles of motion parameter transducers based on mass and charge transport in electrochemical microsystems , 2012, Russian Journal of Electrochemistry.

[9]  C. W. Larkam Theoretical Analysis of the Solion Polarized Cathode Acoustic Linear Transducer , 1965 .

[10]  V. A. Kozlov,et al.  Frequency Characteristics of a Spatially-Confined Electrochemical Cell under Conditions of Convective Diffusion , 2002 .

[11]  I. S. Zakharov,et al.  Stationary Convective Diffusion and Nonlinear Effects in an Electrochemical Transducer , 2003 .

[12]  V. M. Agafonov,et al.  Convective Current in a Four-Electrode Electrochemical Cell at Various Boundary Conditions at Anodes , 2005 .

[13]  Mario De Stefano,et al.  Seismic Behaviour and Design of Irregular and Complex Civil Structures II , 2013 .

[14]  Dmitry L. Zaitsev,et al.  Convective noise in molecular electronic transducers of diffusion type , 2010 .

[16]  V. A. Kozlov,et al.  Dynamic Characteristic of an Electrochemical Cell with Gauze Electrodes in Convective Diffusion Conditions , 2004 .

[17]  E. I. Gordeev,et al.  Asymmetric caldera-related structures in the area of the Avacha group of volcanoes in Kamchatka as revealed by ambient noise tomography and deep seismic sounding , 2014 .

[18]  V. A. Kozlov,et al.  The influence of the electrochemical cell geometry on the frequency dependences of its nonequilibrium impedance and current under the conditions of convective diffusion , 1996 .

[19]  Mateusz Wielopolski,et al.  Introduction to Molecular Electronics , 2010 .

[20]  V. A. Kozlov,et al.  Transfer Function of a Diffusion Transducer at Frequencies Exceeding the Thermodynamic Frequency , 2003 .

[21]  V. M. Agafonov,et al.  Diffusion Sensor of Mechanical Signals: Frequency Response at High Frequencies , 2004 .

[22]  Mihailo D. Trifunac,et al.  Recent Advances in Rotational Seismology , 2009 .