Journal

  • Lee, J., Been, K., Lee, H., Seo, H., and Moon, W. A lumped-parameter model of the free-flooded ring transducer array. The Journal of the Acoustical Society of America, 2024. 155(1): p. 615-628.
  • Oh, B., C. Kim, D. Lee, J. Rho, and W. Moon, An improved analytic model for designing the polymer-composite stepped-plate transducer using the modified Mindlin plate theory. Ultrasonics, 2023. 131: p. 106933.
  • Lee, S., J. Kim, H. Roh, W. Kim, S. Chung, W. Moon, and K. Cho, A High-Fidelity Skin-Attachable Acoustic Sensor for Realizing Auditory Electronic Skin. Advanced Materials, 2022. 34(21): p. e2109545.
  • Kim, C., et al., A parametric array loudspeaker featuring a Langevin transducer, a circular aluminum plate, and composite polymer steps. Sensors and Actuators A: Physical, 2022. 338: p. 113466.
  • Lee, S., H. Roh, J. Kim, S. Chung, D. Seo, W. Moon, and K. Cho, An Electret‐Powered Skin‐Attachable Auditory Sensor that Functions in Harsh Acoustic Environments. Advanced Materials, 2022. 34(40): p. 2205537.
  • Kim, J., S. Lee, G.Y. Bae, and W. Moon, Evaluation of Polymer Materials for MEMS Microphones. Journal of Microelectromechanical Systems, 2022. 31(4): p. 673-682.
  • Lee, H., K. Shin, and W. Moon Capacitive Measurements of SiO2 Films of Different Thicknesses Using a MOSFET-Based SPM Probe. Sensors, 2021. 21, DOI: 10.3390/s21124073.
  • Lee, H. and W. Moon, The Effects of Manufacturing Inaccuracies in an Underwater Acoustic Projector Array on the Acoustic Interactions. IEEE Trans Ultrason Ferroelectr Freq Control, 2021. 68(4): p. 1288-1295.
  • Lee, H., J. Kim, K. Shin, and W. Moon Improving the Performance of the ToGoFET Probe: Advances in Design, Fabrication, and Signal Processing. Micromachines, 2021. 12, DOI: 10.3390/mi12111303.
  • Kim, J., S. Yang, K. Oh, and W. Moon, A piezoelectric micro-cantilever acoustic vector sensor designed considering fluid-structure interaction. Journal of the Acoustical Society of America, 2021. 150(1): p. 257.
  • Shin, K., et al., A Modeling and Feasibility Study of a Micro-Machined Microphone Based on a Field-Effect Transistor and an Electret for a Low-Frequency Microphone. Sensors (Basel), 2020. 20(19): p. 5554.
  • Nguyen, D.N. and W. Moon, Piezoelectric polymer microfiber-based composite for the flexible ultra-sensitive pressure sensor. Journal of Applied Polymer Science, 2020. 137(29).
  • Ahn, H.M., et al., Practical method for parametric array source evaluation at 120 kHz frequency range in the near-field region. Noise Control Engineering Journal, 2020. 68(5): p. 389-398.
  • Nguyen, D.N. and W. Moon, Piezoelectric polymer microfiber‐based composite for the flexible ultra‐sensitive pressure sensor. Journal of Applied Polymer Science, 2019. 137(29): p. 48884.
  • Lee, S., et al., An ultrathin conformable vibration-responsive electronic skin for quantitative vocal recognition. Nat Commun, 2019. 10(1): p. 2468.
  • Been, K. and W. Moon, Reconsideration on Helmholtz-Kirchhoff Integral Solutions for Boundary Points in Radiation Problems. Acta Acustica United with Acustica, 2019. 105(5): p. 827-837.
  • Ahn, H., et al., A Critical Step to Using a Parametric Array Loudspeaker in Mobile Devices. Sensors (Basel), 2019. 19(20).
  • Noh, E., et al., Iterative solutions of the array equations for rapid design and analysis of large projector arrays. Journal of the Acoustical Society of America, 2018. 144(4): p. 2434.
  • Nguyen, D.N., S.M. Yu, and W. Moon, Electrospinning of poly(gamma-benzyl-alpha,L-glutamate) microfibers for piezoelectric polymer applications. Journal of Applied Polymer Science, 2018. 135(27).
  • Hwang, Y., et al., A Precise Equivalent-Circuit Model for a Circular Plate Radiator. Acta Acustica United with Acustica, 2018. 104(1): p. 79-86.
  • Hwang, Y. and W. Moon, A wide-band in-air parametric array source composed of a circular plate with steps and a Langevin transducer with a horn. Applied Acoustics, 2018. 141: p. 223-233.
  • Hwang, Y., et al., An underwater parametric array source transducer composed of PZT/thin-polymer composite. Sensors and Actuators A: Physical, 2018. 279: p. 601-616.
  • Shin, K., et al., A scanning probe mounted on a field-effect transistor: Characterization of ion damage in Si. Micron, 2017. 101: p. 197-205.
  • Lee, J.S., et al., Development and analysis of three-dimensional (3D) printed biomimetic ceramic ossicles (vol 17, pg 1711, 2016). International Journal of Precision Engineering and Manufacturing, 2017. 18(1): p. 141-141.
  • Been, K., et al., A lumped parameter model of the single free-flooded ring transducer. Journal of the Acoustical Society of America, 2017. 141(6): p. 4740.
  • Sung, M., K. Shin, and W. Moon, A micro-machined hydrophone employing a piezoelectric body combined on the gate of a field-effect transistor. Sensors and Actuators A: Physical, 2016. 237: p. 155-166.
  • Nguyen, D.N., Y. Hwang, and W. Moon, Electrospinning of well-aligned fiber bundles using an End-point Control Assembly method. European Polymer Journal, 2016. 77: p. 54-64.
  • Lee, J.S., et al., Development and Analysis of Three-Dimensional (3D) Printed Biomimetic Ceramic. International Journal of Precision Engineering and Manufacturing, 2016. 17(12): p. 1711-1719.
  • Hwang, Y., et al., A Parametric Array Ultrasonic Ranging Sensor with Electrical Beam Steering Capability. Acta Acustica United with Acustica, 2016. 102(3): p. 423-427.
  • Sung, M., K. Shin, and W. Moon, A new transduction mechanism for hydrophones employing piezoelectricity and a field-effect transistor. Sensors and Actuators A: Physical, 2015. 233: p. 557-568.
  • Shin, K., et al., A scanning microscopy technique based on capacitive coupling with a field-effect transistor integrated with the tip. Ultramicroscopy, 2015. 159 Pt 1: p. 1-10.
  • Shin, K., et al., A Micro-Machined Microphone Based on a Combination of Electret and Field-Effect Transistor. Sensors (Basel), 2015. 15(8): p. 20232-49.
  • Kim, S.J., et al., A nano-scale probing system with a gold nano-dot array for measurement of a single biomolecular interaction force. Rsc Advances, 2015. 5(128): p. 105727-105730.
  • Je, Y., et al., A micromachined efficient parametric array loudspeaker with a wide radiation frequency band. Journal of the Acoustical Society of America, 2015. 137(4): p. 1732-43.
  • Han, J.S., et al., Bio-inspired piezoelectric artificial hair cell sensor fabricated by powder injection molding. Smart Materials and Structures, 2015. 24(12).
  • Sung, J., et al., A Novel Resonant-Frequency-Trimming Method Using CNT Rope Synthesis. Journal of Microelectromechanical Systems, 2014. 23(6): p. 1383-1388.
  • Kang, D. and W. Moon, Electrode configuration method with surface profile effect in a contact-type area-varying capacitive displacement sensor. Sensors and Actuators A: Physical, 2013. 189: p. 33-44.
  • Je, Y., H. Lee, and W. Moon, The impact of micromachined ultrasonic radiators on the efficiency of transducers in air. Ultrasonics, 2013. 53(6): p. 1124-34.
  • Lee, S., et al., Resonant frequency variations in a piezoelectric microcantilever sensor under varying operational conditions. Journal of Micromechanics and Microengineering, 2012. 22(10).
  • Lee, S., et al., Measurement of Hepatitis B Surface Antigen Concentrations Using a Piezoelectric Microcantilever as a Mass Sensor. Journal of Sensors, 2012. 2012.
  • Park, J.K. and W.K. Moon, Development of XY scanner with minimized coupling motions for high-speed atomic force microscope. Journal of Central South University of Technology, 2011. 18(3): p. 697-703.
  • Lee, S., et al., Improvements in electrical properties of piezoelectric microcantilever sensors by reducing parasitic effects. Journal of Micromechanics and Microengineering, 2011. 21(8).
  • Kim, S. and W. Moon, A Micro-Pull-Off Test Machine for Reliable Measurement of Adhesive Forces on Micro/Nano-Scale Areas. Journal of Adhesion, 2011. 87(2): p. 139-153.
  • Kang, K.S., et al., Effects of combined mechanical stimulation on the proliferation and differentiation of pre-osteoblasts. Exp Mol Med, 2011. 43(6): p. 367-73.
  • Jin, Y., et al., Gravimetric analysis of CO2 adsorption on activated carbon at various pressures and temperatures using piezoelectric microcantilevers. Anal Chem, 2011. 83(18): p. 7194-7.
  • Hwang, Y., et al., Piezoelectric properties of polypeptide-PMMA molecular composites fabricated by contact charging. Polymer, 2011. 52(13): p. 2723-2728.
  • Farrar, D., et al., Permanent polarity and piezoelectricity of electrospun alpha-helical poly(alpha-amino acid) fibers. Advanced Materials, 2011. 23(34): p. 3954-8.
  • An, T., et al., Fabrication of functional micro- and nanoneedle electrodes using a carbon nanotube template and electrodeposition. Nanoscale Res Lett, 2011. 6(1): p. 306.
  • Park, J.K. and W.K. Moon, Sensorless control for hysteresis compensation of AFM scanner by modified Rayleigh model. Journal of Central South University of Technology, 2010. 17(6): p. 1243-1246.
  • Park, J. and W. Moon, Hysteresis compensation of piezoelectric actuators: the modified Rayleigh model. Ultrasonics, 2010. 50(3): p. 335-9.
  • Park, J., et al., Design of an ultrasonic sensor for measuring distance and detecting obstacles. Ultrasonics, 2010. 50(3): p. 340-6.
  • Lee, H., S. Choi, and W. Moon, A micro-machined piezoelectric flexural-mode hydrophone with air backing: benefit of air backing for enhancing sensitivity. Journal of the Acoustical Society of America, 2010. 128(3): p. 1033-44.
  • Je, Y., et al., A stepped-plate bi-frequency source for generating a difference frequency sound with a parametric array. Journal of the Acoustical Society of America, 2010. 127(6): p. 3494-502.
  • Choi, S., W. Moon, and G. Lim, A micro-machined viscosity-variation monitoring device using propagation of acoustic waves in microchannels. Journal of Micromechanics and Microengineering, 2010. 20(8).
  • Choi, S., H. Lee, and W. Moon, A micro-machined piezoelectric hydrophone with hydrostatically balanced air backing. Sensors and Actuators A: Physical, 2010. 158(1): p. 60-71.
  • Choi, S., H. Lee, and W. Moon, A micro-machined piezoelectric flexural-mode hydrophone with air backing: a hydrostatic pressure-balancing mechanism for integrity preservation. Journal of the Acoustical Society of America, 2010. 128(3): p. 1021-32.
  • Lee, H., D. Kang, and W. Moon, A micro-machined source transducer for a parametric array in air. Journal of the Acoustical Society of America, 2009. 125(4): p. 1879-93.
  • Lee, S.H., et al., V-shaped metal-oxide-semiconductor transistor probe with nano tip for surface electric properties. Ultramicroscopy, 2008. 108(10): p. 1094-100.
  • Lee, S., et al., A multibody-based dynamic simulation method for electrostatic actuators. Nonlinear Dynamics, 2008. 54(1-2): p. 53-68.
  • Kim, S., W. Moon, and J. Jeon, A reliable method to measure the adhesive force with a tiny amount of adhesive material. Journal of Adhesion, 2008. 84(1): p. 60-77.
  • Lee, Y., G. Lim, and W. Moon, A piezoelectric micro-cantilever bio-sensor using the mass-micro-balancing technique with self-excitation. Microsystem Technologies-Micro-and Nanosystems-Information Storage and Processing Systems, 2007. 13(5-6): p. 563-568.
  • Lee, S.H., et al., Fabrication and characterization of 3-Dimensional MOS transistor tip integrated micro cantilever. Microsystem Technologies-Micro-and Nanosystems-Information Storage and Processing Systems, 2007. 13(5-6): p. 579-587.
  • Lee, S.H., et al., Study on the method for the reliability test of focused ion beam. Microsystem Technologies-Micro-and Nanosystems-Information Storage and Processing Systems, 2007. 13(5-6): p. 569-577.
  • Kim, D.S., et al., Replication of high-aspect-ratio nanopillar array for biomimetic gecko foot-hair prototype by UV nano embossing with anodic aluminum oxide mold. Microsystem Technologies-Micro-and Nanosystems-Information Storage and Processing Systems, 2007. 13(5-6): p. 601-606.
  • Han, K., et al., Design and fabrication of the micro-gripper for manipulating the cell. Integrated Ferroelectrics, 2007. 89: p. 77-86.
  • Lee, Y., G. Lim, and W. Moon, A self-excited micro cantilever biosensor actuated by PZT using the mass micro balancing technique. Sensors and Actuators A: Physical, 2006. 130: p. 105-110.
  • Kim, M., et al., A new capacitive displacement sensor with high accuracy and long-range. Sensors and Actuators A: Physical, 2006. 130: p. 135-141.
  • Kim, M. and W. Moon, A new linear encoder-like capacitive displacement sensor. Measurement, 2006. 39(6): p. 481-489.
  • Park, J.K. and W.K. Moon, Constitutive relations for piezoelectric benders under various boundary conditions. Sensors and Actuators A: Physical, 2005. 117(1): p. 159-167.
  • Park, J. and W. Moon, The systematic design and fabrication of a three-chopstick microgripper. International Journal of Advanced Manufacturing Technology, 2005. 26(3): p. 251-261.
  • Park, J., W.K. Chung, and W. Moon, Wire-suspended dynamical system: Stability analysis by tension-closure. Ieee Transactions on Robotics, 2005. 21(3): p. 298-308.
  • Lee, S.H., et al., Fast solving technique for mechanical dynamic characteristic in electromagnetic motional system by electro-mechanical state equation including extracted circuit parameter. Ieee Transactions on Applied Superconductivity, 2004. 14(2): p. 1926-1929.
  • Lee, H., et al., Effects of mutual impedance on the radiation characteristics of transducer arrays. Journal of the Acoustical Society of America, 2004. 115(2): p. 666-79.
  • Kim, T., W. Moon, and S. Kim, Influences of leaf shapes on performance of progressive multi-leaf springs. International Journal of Vehicle Design, 2004. 34(1): p. 65-83.
  • Kim, M., et al., Dynamic simulations of electromechanical robotic systems driven by DC motors. Robotica, 2004. 22: p. 523-531.
  • Choi, S., et al., Human-based evaluation of sound from hard disk drives for noise control. Microsystem Technologies-Micro-and Nanosystems-Information Storage and Processing Systems, 2004. 10(8-9): p. 640-648.
  • Park, J. and W. Moon, A hybrid-type micro-gripper with an integrated force sensor. Microsystem Technologies-Micro-and Nanosystems-Information Storage and Processing Systems, 2003. 9(8): p. 511-519.
  • Moon, W. and Y.G. Kim, An acoustic transformer composed of horns and its application. Journal of Sound and Vibration, 2003. 259(4): p. 779-796.
  • Kim, S.S., W. Moon, and Y.I. Yoo, Noise from progressive multi-leaf springs and methods for its reduction. Proceedings of the Institution of Mechanical Engineers Part D-Journal of Automobile Engineering, 2003. 217(D1): p. 1-12.
  • Choi, S., W. Moon, and J.H. Lee, A new microphone system for near whispering. Journal of the Acoustical Society of America, 2003. 114(2): p. 801-12.
  • Kim, S., W. Moon, and Y. Yoo, An efficient method for calculating the nonlinear stiffness of progressive multi-leaf springs. International Journal of Vehicle Design, 2002. 29(4): p. 403-422.
  • Bae, D.S., et al., Recursive formulas for design sensitivity analysis of mechanical systems. Computer Methods in Applied Mechanics and Engineering, 2001. 190(29-30): p. 3865-3879.
  • Shin, H., et al., An application of polarized domains in ferroelectric thin films using scanning probe microscope. IEEE Trans Ultrason Ferroelectr Freq Control, 2000. 47(4): p. 801-7.
  • Lee, K., et al., Detection mechanism of spontaneous polarization in ferroelectric thin films using electrostatic force microscopy. Japanese Journal of Applied Physics Part 2-Letters, 1999. 38(3a): p. L264-L266.
  • Moon, W.K. and I.J. Busch Vishniac, Modeling of Piezoelectric Ceramic Vibrators Including Thermal Effects .2. Derivation of Partial-Differential Equations. Journal of the Acoustical Society of America, 1995. 98(1): p. 413-421.
  • Moon, W.K. and I.J. Busch Vishniac, Modeling of Piezoelectric Ceramic Vibrators Including Thermal Effects .1. Thermodynamic Property Considerations. Journal of the Acoustical Society of America, 1995. 98(1): p. 403-412.
  • Moon, W.K. and I.J. Busch Vishniac, A Finite-Element Equivalent Bond Graph Modeling Approach with Application to the Piezoelectric Thickness Vibrator. Journal of the Acoustical Society of America, 1993. 93(6): p. 3496-3506.
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