Search Results - "Poh, Hwee Ling"
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Graphene for electrochemical sensing and biosensing
Published in TrAC, Trends in analytical chemistry (Regular ed.) (01-10-2010)“…Graphene has proved to be an excellent nanomaterial for applications in electrochemistry. We review progress in constructing high-performance electrochemical…”
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Sulfur-Doped Graphene via Thermal Exfoliation of Graphite Oxide in H2S, SO2, or CS2 Gas
Published in ACS nano (25-06-2013)“…Doping of graphene with heteroatoms is an effective way to tailor its properties. Here we describe a simple and scalable method of doping graphene lattice with…”
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Searching for Magnetism in Hydrogenated Graphene: Using Highly Hydrogenated Graphene Prepared via Birch Reduction of Graphite Oxides
Published in ACS nano (23-07-2013)“…Fully hydrogenated graphene (graphane) and partially hydrogenated graphene materials are expected to possess various fundamentally different properties from…”
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Nanoporous Carbon Materials for Electrochemical Sensing
Published in Chemistry, an Asian journal (06-02-2012)“…Nanoporous carbon materials are highly important materials for a wide array of applications. Here we show that nanoporous carbon can act as highly active…”
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p‐Element‐Doped Graphene: Heteroatoms for Electrochemical Enhancement
Published in ChemElectroChem (11-02-2015)“…Graphene is finding important applications in electrochemistry. Here, we discuss how the doping of graphene with heteroatoms, namely boron, nitrogen,…”
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Transition Metal (Mn, Fe, Co, Ni)-Doped Graphene Hybrids for Electrocatalysis
Published in Chemistry, an Asian journal (01-06-2013)“…The development of electrocatalysts is crucial for renewable energy applications. Metal‐doped graphene hybrid materials have been explored for this purpose,…”
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Capacitance of p- and n-Doped Graphenes is Dominated by Structural Defects Regardless of the Dopant Type
Published in ChemSusChem (01-04-2014)“…Graphene materials possess attractive properties that can be used for the fabrication of supercapacitors with enhanced energy‐storage performance. It has been…”
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Hydrogen-Bonding Interactions between Water and the One- and Two-Electron-Reduced Forms of Vitamin K1: Applying Quinone Electrochemistry To Determine the Moisture Content of Non-Aqueous Solvents
Published in Journal of the American Chemical Society (04-02-2009)“…Vitamin K1 (VK1) was shown by voltammetry and coulometry to undergo two chemically reversible one-electron reduction processes in acetonitrile (CH3CN)…”
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Graphane electrochemistry: Electron transfer at hydrogenated graphenes
Published in Electrochemistry communications (01-11-2012)“…Graphane, the hydrogenated derivate of graphene is a highly novel material in the field of two dimensional nanocarbon related research. Preparation of…”
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Halogenation of Graphene with Chlorine, Bromine, or Iodine by Exfoliation in a Halogen Atmosphere
Published in Chemistry : a European journal (18-02-2013)“…Nanoarchitectonics on graphene implicates a specific and exact anchoring of molecules or nanoparticles onto the surface of graphene. One such example of an…”
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Transition Metal-Depleted Graphenes for Electrochemical Applications via Reduction of CO2 by Lithium
Published in Small (Weinheim an der Bergstrasse, Germany) (24-04-2014)“…Graphene has immense potential for future applications in the electrochemical field, such as in supercapacitors, fuel cells, batteries, or sensors. Graphene…”
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Noble metal (Pd, Ru, Rh, Pt, Au, Ag) doped graphene hybrids for electrocatalysis
Published in Nanoscale (21-08-2012)“…Metal decorated graphene materials are highly important for catalysis. In this work, noble metal doped-graphene hybrids were prepared by a simple and scalable…”
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High-pressure hydrogenation of graphene: towards graphane
Published in Nanoscale (01-01-2012)“…The conversion of graphene to graphane is of high importance from a technological and scientific point of view. We present here a scalable method for the…”
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Concurrent Phosphorus Doping and Reduction of Graphene Oxide
Published in Chemistry : a European journal (07-04-2014)“…Doped graphene materials are of huge importance because doping with electron‐donating or electron‐withdrawing groups can significantly change the electronic…”
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Impedimetric immunoglobulin G immunosensor based on chemically modified graphenes
Published in Nanoscale (07-02-2012)“…Immunosensors which display high sensitivity and selectivity are of utmost importance to the biomedical field. Graphene is a material which has immense…”
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Graphenes Prepared by Hummers, Staudenmaier and Hofmann Methods for Analysis of TNT-Based Nitroaromatic Explosives in Seawater
Published in Electroanalysis (New York, N.Y.) (01-11-2012)“…The detection of TNT and related nitroaromatic compounds in seawater is of great interest. Electrochemical techniques can be applied for detection purposes…”
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Towards Graphane Applications in Security: The Electrochemical Detection of Trinitrotoluene in Seawater on Hydrogenated Graphene
Published in Electroanalysis (New York, N.Y.) (01-01-2014)“…With greater security and humanitarian concerns, the pressing need to develop fast and sensitive point‐of‐care explosives detectors has never been more…”
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Hydroboration of Graphene Oxide: Towards Stoichiometric Graphol and Hydroxygraphane
Published in Chemistry : a European journal (26-05-2015)“…Covalently functionalized graphene materials with well‐defined stoichiometric composition are of a very high importance in the research of 2D carbon material…”
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Transition Metal-Depleted Graphenes for Electrochemical Applications via Reduction of CO sub(2) by Lithium
Published in Small (Weinheim an der Bergstrasse, Germany) (01-04-2014)“…Graphene has immense potential for future applications in the electrochemical field, such as in supercapacitors, fuel cells, batteries, or sensors. Graphene…”
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Transition Metal‐Depleted Graphenes for Electrochemical Applications via Reduction of CO 2 by Lithium
Published in Small (Weinheim an der Bergstrasse, Germany) (01-04-2014)“…Graphene has immense potential for future applications in the electrochemical field, such as in supercapacitors, fuel cells, batteries, or sensors. Graphene…”
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