A High-Sensitivity Microfluidic Sensor Based on a Substrate Integrated Waveguide Re-Entrant Cavity for Complex Permittivity Measurement of Liquids
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Jing Li | Guoqing Xu | Zhihua Wei | Xuyang Liu | Jie Huang | Zongde Ju | Xingsheng Ni | Xuyang Liu | Guoqing Xu | Zhihua Wei | Jie Huang | Jing Li | Zongde Ju | Xingsheng Ni
[1] K. Fujisawa,et al. General Treatment of Klystron Resonant Cavities , 1958 .
[2] Ke Wu,et al. Development of substrate integrated waveguide power dividers , 2003, CCECE 2003 - Canadian Conference on Electrical and Computer Engineering. Toward a Caring and Humane Technology (Cat. No.03CH37436).
[3] David J. Rowe,et al. Novel Microwave Microfluidic Sensor Using a Microstrip Split-Ring Resonator , 2014, IEEE Transactions on Microwave Theory and Techniques.
[4] Changjun Liu,et al. A Microstrip Resonator With Slotted Ground Plane for Complex Permittivity Measurements of Liquids , 2008, IEEE Microwave and Wireless Components Letters.
[5] Stanislaw Gubanski,et al. Dielectric relaxation in dielectric mixtures: Application of the finite element method and its comparison with dielectric mixture formulas , 2001 .
[6] Shahrokh Saeedi,et al. Tunable, High-Q, Substrate-Integrated, Evanescent-Mode Cavity Bandpass-Bandstop Filter Cascade , 2016, IEEE Microwave and Wireless Components Letters.
[7] Changjun Liu,et al. An SIW Resonator Sensor for Liquid Permittivity Measurements at C Band , 2015, IEEE Microwave and Wireless Components Letters.
[8] Shahid A. Khan,et al. Top loaded TM01δ Mode Cylindrical Dielectric Resonator for Complex Permittivity Characterization of Liquids , 2016 .
[9] Joaquim J. Barroso,et al. Analysis and Simulation of Reentrant Cylindrical Cavities , 2005 .
[10] David Dubuc,et al. Microwave Microfluidic Sensor Based on a Microstrip Splitter/Combiner Configuration and Split Ring Resonators (SRRs) for Dielectric Characterization of Liquids , 2017, IEEE Sensors Journal.
[11] J. Fraden,et al. Handbook of Modern Sensors: Physics, Designs, and Applications, 2nd ed. , 1998 .
[12] Rabindra K. Mishra,et al. Recent advances in theory and applications of substrate‐integrated waveguides: A review , 2016 .
[13] Raoul R. Nigmatullin,et al. Dielectric relaxation in complex systems: quality sensing and dielectric properties of honeydew melons from 10 MHz to 1.8 GHz , 2006 .
[14] Fred Duewer,et al. High spatial resolution quantitative microwave impedance microscopy by a scanning tip microwave near-field microscope , 1997 .
[15] A. A. Maryott,et al. Circular of the Bureau of Standards no. 589:: tables of dielectric dispersion data for pure liquids and dilute solutions , 1958 .
[16] W. R. Tinga,et al. New results for coaxial re-entrant cavity with partially dielectric filled gap , 1992 .
[17] R.D. Pollard,et al. Sensitivity Analysis and Experimental Investigation of Microstrip Resonator Technique for the in-process Moisture/Permittivity Measurement of Petrochemicals and Emulsions of Crude Oil and Water , 2006, 2006 IEEE MTT-S International Microwave Symposium Digest.
[18] Sungjoon Lim,et al. Complementary Split-Ring Resonator-Loaded Microfluidic Ethanol Chemical Sensor , 2016, Sensors.
[19] Nam-Young Kim,et al. Radio Frequency Detection and Characterization of Water-Ethanol Solution through Spiral-Coupled Passive Micro-Resonator Sensor , 2018, Sensors.
[20] Prayoot Akkaraekthalin,et al. Nano-Fluidic Millimeter-Wave Lab-on-a-Waveguide Sensor for Liquid-Mixture Characterization , 2018, IEEE Sensors Journal.
[21] G Humbert,et al. Rigorous analysis of highly tunable cylindrical transverse magnetic mode re-entrant cavities. , 2013, The Review of scientific instruments.
[22] Abhishek Kumar Jha,et al. A Generalized Rectangular Cavity Approach for Determination of Complex Permittivity of Materials , 2014, IEEE Transactions on Instrumentation and Measurement.
[23] W.J. Chappell,et al. High-$Q$ Fully Reconfigurable Tunable Bandpass Filters , 2009, IEEE Transactions on Microwave Theory and Techniques.
[24] Sungjoon Lim,et al. Electromagnetic-based ethanol chemical sensor using metamaterial absorber , 2016 .
[25] A Sotgiu,et al. On the design of a re-entrant square cavity as resonator for low-frequency ESR spectroscopy , 1983 .
[26] R. Clarke,et al. A review of RF and microwave techniques for dielectric measurements on polar liquids , 2006, IEEE Transactions on Dielectrics and Electrical Insulation.
[27] D. Dubuc,et al. A Microwave and Microfluidic Planar Resonator for Efficient and Accurate Complex Permittivity Characterization of Aqueous Solutions , 2013, IEEE Transactions on Microwave Theory and Techniques.
[28] I. Hunter,et al. Substrate Integrated Waveguide Cavity Resonators for Complex Permittivity Characterization of Materials , 2008, IEEE Transactions on Microwave Theory and Techniques.
[29] Sungjoon Lim,et al. Microwave Chemical Sensor Using Substrate-Integrated-Waveguide Cavity , 2017 .
[30] Mojgan Daneshmand,et al. Wide dynamic range microwave planar coupled ring resonator for sensing applications , 2016 .
[31] David J. Rowe,et al. Improved Split-Ring Resonator for Microfluidic Sensing , 2014, IEEE Transactions on Microwave Theory and Techniques.
[32] Zahriladha Zakaria,et al. High-Q Sensor Based on Symmetrical Split Ring Resonator With Spurlines for Solids Material Detection , 2017, IEEE Sensors Journal.
[33] M. Kent,et al. Intangible but not intractable: the prediction of fish ‘quality’ variables using dielectric spectroscopy , 2007 .
[34] Alfred Kik,et al. Complex Permittivity Measurement Using a Ridged Waveguide Cavity and the Perturbation Method , 2016, IEEE Transactions on Microwave Theory and Techniques.
[35] Lei Wang,et al. High-sensitivity radio frequency noncontact sensing and accurate quantification of uric acid in temperature-variant aqueous solutions , 2018, Applied Physics Express.
[36] Ke Wu,et al. Substrate Integrated Waveguide Filter: Basic Design Rules and Fundamental Structure Features , 2014, IEEE Microwave Magazine.
[37] Chao Zhang,et al. Highly Sensitive Microwave Microfluidic Chemical Sensors Based on Metamaterials , 2018, 2018 IEEE International Conference on Computational Electromagnetics (ICCEM).
[38] Ke Wu,et al. Design Consideration and Performance Analysis of Substrate Integrated Waveguide Components , 2002, 2002 32nd European Microwave Conference.
[39] Mojgan Daneshmand,et al. Strongly Enhanced Sensitivity in Planar Microwave Sensors Based on Metamaterial Coupling , 2017, IEEE Transactions on Microwave Theory and Techniques.
[40] Sungjoon Lim,et al. Correction: Lim, S., et al. Millimeter-Wave Chemical Sensor Using Substrate-Integrated-Waveguide Cavity. Sensors 2016, 16, 1829 , 2017, Sensors.
[41] L. Katehi,et al. High-$Q$ Tunable Microwave Cavity Resonators and Filters Using SOI-Based RF MEMS Tuners , 2010, Journal of Microelectromechanical Systems.
[42] Lei Xu,et al. A Microwave Method for Dielectric Characterization Measurement of Small Liquids Using a Metamaterial-Based Sensor , 2018, Sensors.
[43] Ian D. Robertson,et al. A Microfluidic-Integrated SIW Lab-on-Substrate Sensor for Microliter Liquid Characterization , 2016, IEEE Sensors Journal.
[44] G. Lazzi,et al. Flexible Liquid Metal Alloy (EGaIn) Microstrip Patch Antenna , 2012, IEEE Transactions on Antennas and Propagation.
[45] Ke Wu,et al. Substrate Integrated Waveguide Filters: Practical Aspects and Design Considerations , 2014, IEEE Microwave Magazine.
[46] Jerzy Krupka,et al. Measurements of the complex permittivity of microwave circuit board substrates using split dielectric resonator and reentrant cavity techniques , 1996 .
[47] Sungjoon Lim,et al. Millimeter-Wave Chemical Sensor Using Substrate-Integrated-Waveguide Cavity , 2016, Sensors.
[48] G. Whitesides. The origins and the future of microfluidics , 2006, Nature.