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ACS Sensors|July 9, 2020
A Tunable Three-Dimensional Printed Microfluidic Resistive Pulse Sensor for the Characterization of Algae and MicroplasticsMarcus Pollard, Eugenie Hunsicker, Mark PlattSmall (Weinheim an Der Bergstrasse, Germany)|May 24, 2012
M13 bacteriophage-activated superparamagnetic beads for affinity separationJulien Muzard, Mark Platt, Gil U LeeThe Analyst|February 18, 2020
Rapid quantification of prion proteins using resistive pulse sensingMatthew J Healey, Muttuswamy Sivakumaran, Mark PlattAnalytical Chemistry|January 2, 2014
Monitoring aptamer-protein interactions using tunable resistive pulse sensingEmily R Billinge, Murray Broom, Mark PlattBiomicrofluidics|June 5, 2012
Resistive pulse sensing of magnetic beads and supraparticle structures using tunable poresGeoff R Willmott, Mark Platt, Gil U LeeSmall (Weinheim an Der Bergstrasse, Germany)|May 10, 2012
Resistive pulse sensing of analyte-induced multicomponent rod aggregation using tunable poresMark Platt, Geoff R Willmott, Gil U LeeIntegrative Biology : Quantitative Biosciences From Nano to Macro|December 22, 2009
Advances and perspectives in aptamer arraysWilliam Rowe, Mark Platt, Philip J R DayLangmuir : the ACS Journal of Surfaces and Colloids|January 13, 2016
Particle-by-Particle Charge Analysis of DNA-Modified Nanoparticles Using Tunable Resistive Pulse SensingEmma L C J Blundell, Robert Vogel, Mark PlattJournal of Visualized Experiments : Jove|November 3, 2016
Determination of Zeta Potential via Nanoparticle Translocation Velocities through a Tunable Nanopore: Using DNA-modified Particles as an ExampleEmma L C J Blundell, Robert Vogel, Mark PlattLangmuir : the ACS Journal of Surfaces and Colloids|February 5, 2013
Synthesis of superparamagnetic particles with tunable morphologies: the role of nanoparticle-nanoparticle interactionsJames J O'Mahony, Mark Platt, Devrim Kilinc, et al.Pageof 6