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Dive into the research topics where Michael Lublow is active.

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Featured researches published by Michael Lublow.


Journal of Materials Chemistry | 2013

Solar hydrogen evolution using metal-free photocatalytic polymeric carbon nitride/CuInS2 composites as photocathodes

Florent Yang; Vadym Kuznietsov; Michael Lublow; Christoph Merschjann; Alexander Steigert; J. Klaer; Arne Thomas; Thomas Schedel-Niedrig

Polymeric carbon nitride (g-C3N4) films were synthesized on polycrystalline semiconductor CuInS2 chalcopyrite thin film electrodes by thermal polycondensation and were investigated as photocathodes for the hydrogen evolution reaction (HER) under photoelectrochemical conditions. The composite photocathode materials were compared to g-C3N4 powders and were characterized with grazing incidence X-ray diffraction and X-ray photoemission spectroscopy as well as Fourier transform infrared and Raman spectroscopies. Surface modification of polycrystalline CuInS2 semiconducting thin films with photocatalytically active g-C3N4 films revealed structural and chemical properties corresponding to the properties of g-C3N4 powders. The g-C3N4/CuInS2 composite photocathode material generates a cathodic photocurrent at potentials up to +0.36 V vs. RHE in 0.1 M H2SO4 aqueous solution (pH 1), which corresponds to a +0.15 V higher onset potential of cathodic photocurrent than the unmodified CuInS2 semiconducting thin film photocathodes. The cathodic photocurrent for the modified composite photocathode materials was reduced by almost 60% at the hydrogen redox potential. However, the photocurrent generated from the g-C3N4/CuInS2 composite electrode was stable for 22 h. Therefore, the presence of the polymeric g-C3N4 films composed of a network of nanoporous crystallites strongly protects the CuInS2 semiconducting substrate from degradation and photocorrosion under acidic conditions. Conversion of visible light to hydrogen by photoelectrochemical water splitting can thus be successfully achieved by g-C3N4 films synthesized on polycrystalline CuInS2 chalcopyrite electrodes.


Chemsuschem | 2012

Metal-Free Photocatalytic Graphitic Carbon Nitride on p-Type Chalcopyrite as a Composite Photocathode for Light-Induced Hydrogen Evolution

Florent Yang; Michael Lublow; Steven Orthmann; Christoph Merschjann; Tobias Tyborski; Marin Rusu; Sven Kubala; Arne Thomas; Rosa Arrigo; Michael Hävecker; Thomas Schedel-Niedrig

Recently, it has been shown that an abundant material, polymeric carbon nitride, can produce hydrogen from water under visible-light irradiation in the presence of a sacrificial donor. We present herein the preparation and characterization of graphitic carbon nitride (g-C(3)N(4)) films on p-type semiconducting CuGaSe(2) chalcopyrite thin-film substrates by thermal condensation of a dicyandiamide precursor under inert-gas conditions. Structural and surface morphological studies of the carbon nitride films suggest a high porosity of g-C(3)N(4) thin films consisting of a network of nanocrystallites. Photoelectrochemical investigations show light-induced hydrogen evolution upon cathodic polarization for a wide range of proton concentrations in the aqueous electrolyte. Additionally, synchrotron radiation-based photoelectron spectroscopy has been applied to study the surface/near-surface chemical composition of the utilized g-C(3)N(4) film photocathodes. For the first time, it has been shown that g-C(3)N(4) films coated on p-type CuGaSe(2) thin films can be successfully applied as new photoelectrochemical composite photocathodes for light-induced hydrogen evolution.


209th ECS Meeting | 2007

Electrochemically Induced Self-organized Nanostructures on Silicon for Realization of a Novel Nanoemitter Solar Cell Concept

Katarzyna Skorupska; Mohammed Aggour; Michael Kanis; Michael Lublow; Helmut Jungblut; Joachim Lewerenz Hans

Oscillatory behaviour of silicon electrodes in fluoride containing solution results in formation of nanoporous oxides. Metal electrodeposition into these pores results in local Schottky junction formation. Metal nanoemitters are contacted with a transparent conductive oxide and aluminum contact fingers for preparation of the first device (Al/ZnO/Pt-SiO2/Si/GaIn/Ag). Present solar-toelectrical conversion efficiencies are small and various improvement possibilities are outlined.


Solar Energy Materials and Solar Cells | 2012

Au–Pt core–shell nanoemitters on silicon for photoelectrochemical solar energy conversion

Michael Lublow; B. Bouabadi; Sven Kubala


215th ECS Meeting | 2009

Surface Chemistry and Nanotopography of Step-Bunched Silicon Surfaces: in-system SRPES and SPM Investigations

Thomas Stempel; A. G. Muñoz; Katarzyna Skorupska; Michael Lublow; Michael Kanis; H. J. Lewerenz


arXiv: Chemical Physics | 2012

Preparation and Characterization of Metal-free graphitic Carbon Nitride Film Photocathodes for Light-induced Hydrogen Evolution

Florent Yang; Michael Lublow; Steven Orthmann; Christoph Merschjann; Tobias Tyborski; Marin Rusu; Michael Kanis; Arne Thomas; Rosa Arrigo; Michael Haevecker; Thomas Schedel-Niedrig


Meeting Abstracts | 2012

Solar Hydrogen Generation at Pre-Structured Silicon Photocathodes Activated by Bimetallic Nanoparticles

Michael Lublow; Christoph Merschjann; Thomas Schedel-Niedrig


Meeting Abstracts | 2010

Fractal Silicon Micropatterns: Surface Analysis with Spatial Resolution

Michael Lublow; Bouchra Bouabadi; Christian Pettenkofer; Hans Joachim Lewerenz


214th ECS Meeting | 2009

Silicon Nanostructures or Photocatalytic and Photovoltaic Application by Chronoamperometric Conditioning

Michael Lublow; Hans Joachim Lewerenz


Meeting Abstracts | 2008

Novel Silicon Nanostructures for Solar Energy Conversion by Chronoamperometric Conditioning

Michael Lublow; Hans Joachim Lewerenz

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Michael Kanis

Technical University of Berlin

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Hans Joachim Lewerenz

California Institute of Technology

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Arne Thomas

Technical University of Berlin

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Florent Yang

Helmholtz-Zentrum Berlin

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Marin Rusu

Helmholtz-Zentrum Berlin

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Steven Orthmann

Technical University of Berlin

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