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Featured researches published by Nicolas J. Peter.


Journal of Materials Chemistry | 2016

Vanadium pentoxide/carbide-derived carbon core–shell hybrid particles for high performance electrochemical energy storage

Marco Zeiger; Teguh Ariyanto; Benjamin Krüner; Nicolas J. Peter; Simon Fleischmann; Bastian J. M. Etzold; Volker Presser

A novel, two step synthesis is presented combining the formation of carbide-derived carbon (CDC) and redox-active vanadium pentoxide (V2O5) in a core–shell manner using solely vanadium carbide (VC) as the precursor. In a first step, the outer part of VC particles is transformed to nanoporous CDC owing to the in situ formation of chlorine gas from NiCl2 at 700 °C. In a second step, the remaining VC core is calcined in synthetic air to obtain V2O5/CDC core–shell particles. Materials characterization by means of electron microscopy, Raman spectroscopy, and X-ray diffraction clearly demonstrates the partial transformation from VC to CDC, as well as the successive oxidation to V2O5/CDC core–shell particles. Electrochemical performance was tested in organic 1 M LiClO4 in acetonitrile using half- and asymmetric full-cell configuration. High specific capacities of 420 mA h g−1 (normalized to V2O5) and 310 mA h g−1 (normalized to V2O5/CDC) were achieved. The unique nanotextured core–shell architecture enables high power retention with ultrafast charging and discharging, achieving more than 100 mA h g−1 at 5 A g−1 (rate of 12C). Asymmetric cell design with CDC on the positive polarization side leads to a high specific energy of up to 80 W h kg−1 with a superior retention of more than 80% over 10 000 cycles and an overall energy efficiency of up to 80% at low rates.


Journal of Materials Chemistry | 2017

Vanadia–titania multilayer nanodecoration of carbon onions via atomic layer deposition for high performance electrochemical energy storage

Simon Fleischmann; Aura Tolosa; Marco Zeiger; Benjamin Krüner; Nicolas J. Peter; Ingrid Grobelsek; Antje Quade; Angela Kruth; Volker Presser

Atomic layer deposition has proven to be a particularly attractive approach for decorating mesoporous carbon substrates with redox active metal oxides for electrochemical energy storage. This study, for the first time, capitalizes on the cyclic character of atomic layer deposition to obtain highly conformal and atomically controlled decoration of carbon onions with alternating stacks of vanadia and titania. The addition of 25 mass% TiO2 leads to expansion of the VO2 unit cell, thus greatly enhancing lithium intercalation capacity and kinetics. Electrochemical characterization revealed an ultrahigh discharge capacity of up to 382 mA h g−1 of the composite electrode (554 mA h g−1 per metal oxide) with an impressive capacity retention of 82 mA h g−1 (120 mA h g−1 per metal oxide) at a high discharge rate of 20 A g−1 or 52C. Stability benchmarking showed stability over 3000 cycles when discharging to a reduced potential of −1.8 V vs. carbon. These capacity values are among the highest reported for any metal oxide system, while in addition, supercapacitor-like power performance and longevity are achieved. At a device level, high specific energy and power of up to 110 W h kg−1 and 6 kW kg−1, respectively, were achieved when employing the hybrid material as anode versus activated carbon cathode.


Journal of Power Sources | 2016

Sputtering of sub-micrometer aluminum layers as compact, high-performance, light-weight current collector for supercapacitors

J. Busom; Anna Schreiber; Aura Tolosa; Nicolas Jäckel; Ingrid Grobelsek; Nicolas J. Peter; Volker Presser


Journal of Materials Research | 2017

Beam-induced atomic migration at Ag-containing nanofacets at an asymmetric Cu grain boundary

Nicolas J. Peter; Christian Liebscher; Christoph Kirchlechner; Gerhard Dehm


Surface & Coatings Technology | 2018

Thermal stability of nanocomposite Mo 2 BC hard coatings deposited by magnetron sputtering

Stephan Gleich; Benjamin Breitbach; Nicolas J. Peter; Rafael Soler; Hamid Bolvardi; Jochen M. Schneider; Gerhard Dehm; Christina Scheu


Frühjahrstagung der DPG | 2018

Observation of dislocation interactions with an asymm. GB by high frame-rate in situ TEM

Nicolas J. Peter; V. B. Özdöl; Colin Ophus; Christian Liebscher; Christoph Kirchlechner; Andrew M. Minor; Gerhard Dehm


TMS 2017 | 2017

New Insights into Plasticity at Grain Boundaries by Nano- and Micromechanics

Christoph Kirchlechner; Nataliya Malyar; Nicolas J. Peter; Gerhard Dehm; Jean-Sébastien Micha


MS&T17, Materials Science & Technology | 2017

Ag segregation induced nanofaceting of an asymmetric tilt grain boundary in copper

Nicolas J. Peter; Christian Liebscher; T. Frolov; Raheleh Hadian; Blazej Grabowski; Christoph Kirchlechner; Gerhard Dehm


Gordon Research Conference (GRC) 2016, Thin Film & Small Scale Mechanical Behavior#N# | 2016

Effect of the atomistic grain boundary structure on dislocation interaction in copper

Nicolas J. Peter; Christoph Kirchlechner; Christian Liebscher; Gerhard Dehm


European Microscopy Congress (EMC) 2016#N# | 2016

Beam induced atomic migration at Ag containing nanofacets at an asymmetric Cu grain boundary

Nicolas J. Peter; Christoph Kirchlechner; Christian Liebscher; Gerhard Dehm

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