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Analytical and Bioanalytical Chemistry|November 4, 2010
Graphene-based electrochemical sensor for detection of 2,4,6-trinitrotoluene (TNT) in seawater: the comparison of single-, few-, and multilayer graphene nanoribbons and graphite microparticlesMadeline Shuhua Goh, Martin PumeraPhysical Chemistry Chemical Physics : PCCP|February 17, 2017
The effect of varying solvents for MoS2 treatment on its catalytic efficiencies for HER and ORRXing Juan Chua, Martin PumeraChemical Society Reviews|October 15, 2013
Chemical reduction of graphene oxide: a synthetic chemistry viewpointChun Kiang Chua, Martin PumeraACS Nano|March 28, 2015
Monothiolation and Reduction of Graphene Oxide via One-Pot Synthesis: Hybrid Catalyst for Oxygen ReductionChun Kiang Chua, Martin PumeraACS Applied Materials & Interfaces|November 28, 2017
Composition-Graded MoWSx Hybrids with Tailored Catalytic Activity by Bipolar ElectrochemistryShu Min Tan, Martin PumeraNanoscale|September 5, 2018
Multifunctional and self-propelled spherical Janus nano/micromotors: recent advancesAmir Masoud Pourrahimi, Martin PumeraNanoscale Research Letters|July 31, 2010
Effect of Nitric Acid "Washing" Procedure on Electrochemical Behavior of Carbon Nanotubes and Glassy Carbon μ-ParticlesUlkü Anik, Serdar Cevik, Martin PumeraLab on a Chip|April 13, 2013
Challenges of the movement of catalytic micromotors in bloodGuanjia Zhao, Marlitt Viehrig, Martin PumeraChemistry, an Asian Journal|December 17, 2009
Platelet graphite nanofibers for electrochemical sensing and biosensing: the influence of graphene sheet orientationAdriano Ambrosi, Toshio Sasaki, Martin PumeraChemistry, an Asian Journal|September 24, 2008
Relationship between carbon nanotube structure and electrochemical behavior: heterogeneous electron transfer at electrochemically activated carbon nanotubesMartin Pumera, Toshio Sasaki, Hideo IwaiPageof 56