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Results 1-10 of 17 (Search time: 0.008 seconds).
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PreviewIssue DateTitleAuthor(s)
2014Impedance spectroscopy study of nanopore arrays for biosensing applicationsKant, K.; Kurkuri, M.; Yu, J.; Shapter, J.G.; Priest, C.; Losic, D.
2010Tailoring the surface functionalities of titania nanotube arraysVasilev, K.; Poh, Z.; Kant, K.; Chan, J.; Michelmore, A.; Losic, D.
2010Nanopore gradients on porous aluminum oxide generated by nonuniform anodization of aluminumKant, K.; Low, S.; Marshal, A.; Shapter, J.; Losic, D.
2011Self-ordering electrochemistry: a simple approach for engineering nanopore and nanotube arrays for emerging applicationsLosic, D.; Velleman, L.; Kant, K.; Kumeria, T.; Gulati, K.; Shapter, B.; Beattie, D.; Simovic, S.
2014The influence of nanopore dimensions on the electrochemical properties of nanopore arrays studied by impedance spectroscopyKant, K.; Priest, C.; Shapter, J.; Losic, D.
2015Microbial cell lysis and nucleic acid extraction via nanofluidic channelKant, K.; Yoo, J.; Amos, S.; Erkelens, M.; Priest, C.; Shapter, J.; Losic, D.
2014Characterization of impedance biosensing performance of single and nanopore arrays of anodic porous alumina fabricated by focused ion beam (FIB) millingKant, K.; Priest, C.; Shapter, J.; Losic, D.
2014Silicon diatom frustules as nanostructured photoelectrodesChandrasekaran, S.; Sweetman, M.; Kant, K.; Skinner, W.; Losic, D.; Nann, T.; Voelcker, N.
2010Electrochemical synthesis of nickel hexacyanoferrate nanoarrays with dots, rods and nanotubes morphology using a porous alumina templateSabzi, R.; Kant, K.; Losic, D.
2009A simple approach for synthesis of TiO2 nanotubes with through-hole morphologyKant, K.; Losic, D.