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David A. Muller

Researcher Next ID · RN-032415

Researcher · Biochemistry, Genetics and Molecular Biology

Cornell University

Ithaca, Germany

Accepting doctoral researchersFunding unknown
Works count
1,111
Citation count
73,464
H-index
127
i10-index
432

Research interests

Biochemistry, Genetics and Molecular Biology
Engineering
Materials Science
Electron and X-Ray Spectroscopy Techniques
Advanced Electron Microscopy Techniques and Applications
Electronic and Structural Properties of Oxides
Semiconductor materials and devices
Magnetic and transport properties of perovskites and related materials

Publications

  • Operando studies reveal active Cu nanograins for CO2 electroreduction

    Nature · 2023 · 10.1038/s41586-022-05540-0

  • Spatially resolved steady-state negative capacitance

    Nature · 2019 · https://doi.org/10.1038/s41586-018-0855-y

  • Observation of room-temperature polar skyrmions

    Nature · 2019 · 10.1038/s41586-019-1092-8

  • Synergistic Mn-Co catalyst outperforms Pt on high-rate oxygen reduction for alkaline polymer electrolyte fuel cells

    Nature Communications · 2019 · https://doi.org/10.1038/s41467-019-09503-4

  • Editors' Choice—Connecting Fuel Cell Catalyst Nanostructure and Accessibility Using Quantitative Cryo-STEM Tomography

    Journal of The Electrochemical Society · 2018 · https://doi.org/10.1149/2.0541803jes

  • Electron ptychography of 2D materials to deep sub-ångström resolution

    Nature · 2018 · 10.1038/s41586-018-0298-5

  • Intrinsic Two-Dimensional Ferroelectricity with Dipole Locking

    Physical Review Letters · 2018 · 10.1103/physrevlett.120.227601

  • Layer-by-layer assembly of two-dimensional materials into wafer-scale heterostructures

    Nature · 2017 · 10.1038/nature23905

  • Janus monolayers of transition metal dichalcogenides

    Nature Nanotechnology · 2017 · 10.1038/nnano.2017.100

  • Rapid electron transfer by the carbon matrix in natural pyrogenic carbon

    Nature Communications · 2017 · 10.1038/ncomms14873

  • Achieving High-Power PEM Fuel Cell Performance with an Ultralow-Pt-Content Core–Shell Catalyst

    ACS Catalysis · 2016 · https://doi.org/10.1021/acscatal.5b02819

  • Large-scale chemical assembly of atomically thin transistors and circuits

    Nature Nanotechnology · 2016 · https://doi.org/10.1038/nnano.2016.115

  • Multi-terminal transport measurements of MoS2 using a van der Waals heterostructure device platform

    Nature Nanotechnology · 2015 · 10.1038/nnano.2015.70

  • High-mobility three-atom-thick semiconducting films with wafer-scale homogeneity

    Nature · 2015 · 10.1038/nature14417

  • Graphene kirigami

    Nature · 2015 · 10.1038/nature14588

  • Strain solitons and topological defects in bilayer graphene

    Proceedings of the National Academy of Sciences · 2013 · 10.1073/pnas.1309394110

  • One-Dimensional Electrical Contact to a Two-Dimensional Material

    Science · 2013 · 10.1126/science.1244358

  • Grains and grain boundaries in highly crystalline monolayer molybdenum disulphide

    Nature Materials · 2013 · 10.1038/nmat3633

  • Graphene and boron nitride lateral heterostructures for atomically thin circuitry

    Nature · 2012 · 10.1038/nature11408

  • Tailoring Electrical Transport Across Grain Boundaries in Polycrystalline Graphene

    Science · 2012 · 10.1126/science.1218948

  • Comparison between Dealloyed PtCo3and PtCu3Cathode Catalysts for Proton Exchange Membrane Fuel Cells

    The Journal of Physical Chemistry C · 2012 · https://doi.org/10.1021/jp306107t

  • Structurally ordered intermetallic platinum–cobalt core–shell nanoparticles with enhanced activity and stability as oxygen reduction electrocatalysts

    Nature Materials · 2012 · 10.1038/nmat3458

  • Atomic-Resolution Spectroscopic Imaging of Ensembles of Nanocatalyst Particles Across the Life of a Fuel Cell

    Nano Letters · 2011 · https://doi.org/10.1021/nl203975u

  • Grains and grain boundaries in single-layer graphene atomic patchwork quilts

    Nature · 2011 · 10.1038/nature09718

  • A strong ferroelectric ferromagnet created by means of spin–lattice coupling

    Nature · 2010 · 10.1038/nature09331

  • Multifunctional nanoarchitectures from DNA-based ABC monomers

    Nature Nanotechnology · 2009 · https://doi.org/10.1038/nnano.2009.93

  • Free-standing nanoparticle superlattice sheets controlled by DNA

    Nature Materials · 2009 · https://doi.org/10.1038/nmat2440

  • Atomic-Scale Chemical Imaging of Composition and Bonding by Aberration-Corrected Microscopy

    Science · 2008 · 10.1126/science.1148820

  • Superconducting Interfaces Between Insulating Oxides

    Science · 2007 · 10.1126/science.1146006

  • Why some interfaces cannot be sharp

    Nature Materials · 2006 · 10.1038/nmat1569

  • Atomic-scale imaging of nanoengineered oxygen vacancy profiles in SrTiO3

    Nature · 2004 · 10.1038/nature02756

  • Artificial charge-modulationin atomic-scale perovskite titanate superlattices

    Nature · 2002 · 10.1038/nature00977

  • The electronic structure at the atomic scale of ultrathin gate oxides

    Nature · 1999 · 10.1038/21602

  • Compressive-stress-induced formation of thin-film tetrahedral amorphous carbon

    Physical Review Letters · 1991 · 10.1103/physrevlett.67.773

Current projects

    No projects listed.