Optically driven fluid flowFranz M. Weinert and Dieter Braun
Journal of Applied Physics 104, 104701 (2008)
Picked by Nature Photonics, 3, 80 (2009)
Observation of Slip Flow in ThermophoresisFranz M. Weinert and Dieter Braun
Physical Review Letters 101, 168301 (2008)
Microscale Fluid Flow Induced byFranz M. Weinert, Jonas A. Kraus, Thomas Franosch and Dieter Braun
Physical Review Letters 100, 164501 (2008)
Melting curve analysis in a snapshotPhilipp Baaske, Stefan Duhr and Dieter Braun
Applied Physics Letters 91, 133901 (2007)
From the cover:Philipp Baaske, Franz M. Weinert, Stefan Duhr, Kono H. Lemke, Michael J. Russell, Dieter Braun
PNAS 104, 9346–9351 (2007)
[Commentary by Eugene V. Koonin, PNAS 104, 9105-9106 (2007)]
Size Determination of (Bio)conjugated Water-Soluble Colloidal Nanoparticles: A Comparison of Different TechniquesR. A. Sperling, T. Liedl, S. Duhr, S. Kudera, M. Zanella, C.-A. J. Lin, W. H. Chang, D. Braun, and W. J. Parak
J. Phys. Chem. C 111, 11552-11559 (2007)
Thermodiffusion of Charged Colloids: Single-Particle DiffusionJan K. G. Dhont, Simone Wiegand, Stefan Duhr and Dieter Braun
Langmuir 23, 1674-1683 (2007)
From the cover:Stefan Duhr and Dieter Braun
PNAS 103, 19678–19682 (2006)
[Commentary by Dean Astumian, PNAS 104, 3-4 (2007)]
Optothermal Molecule Trapping by Opposing Fluid Flow with Thermophoretic DriftStefan Duhr and Dieter Braun
Physical Review Letters 97, 038103 (2006)
Thermophoretic Depletion Follows Boltzmann DistributionStefan Duhr and Dieter Braun
Physical Review Letters 96, 168301 (2006)
Nonequilibrium Thermodynamics of Wealth CondensationDieter Braun
Physica A, 369, 714-722 (2006)
Convective polymerase chain reaction around micro immersion heaterMartin Hennig and Dieter Braun
Applied Physics Letters 87, 183901 (2005)
[Discussed in Nature Methods 3, 8-9 (2006)]
The Role of Metal Nanoparticles in Remote Release of Encapsulated MaterialsA.G. Skirtach, C. Déjugna, D. Braun, A.S. Susha, A.L. Rogach, W.J. Parak, H. Möhwald, G.B. Sukhorukov
Nano Letters 7:1371-1377 (2005)
Two-dimensional colloidal crystals formed by thermophoresis and convectionStefan Duhr and Dieter Braun
Applied Physics Letters 86:131921 (2005)
Thermophoresis of DNA determined by microfluidic fluorescenceStefan Duhr, Silvia Arduini and Dieter Braun
European Physical Journal E 15:277-286 (2004)
PCR by Thermal ConvectionDieter Braun
Modern Physics Letters B, 18:775-784 (2004)
Imaging Neuronal Seal Resistance on Silicon Chip using Fluorescent Voltage-Sensitive DyeDieter Braun and Peter Fromherz
Biophysical Journal 87:1351-1359 (2004)
Thermal force approach to molecular evolutionDieter Braun and Albert Libchaber
Physical Biology 1:P1-P8 (2004)
Lock-In by molecular multiplicationDieter Braun and Albert Libchaber
Applied Physics Letters 83:5554-5556 (2003)
Exponential DNA Replication by Laminar ConvectionDieter Braun, Noel L. Goddard and Albert Libchaber
Physical Review Letters 91:158103 (2003)
[Article by Physical Review Focus; Nature News Article]
Multiplexed DNA Quantification by Spectroscopic Shift of Two Microsphere CavitiesFrank Vollmer, Stephen Arnold, Dieter Braun, Iwao Teraoka and Albert Libchaber
Biophysical Journal 85:1974–1979 (2003)
[Article by Biophotonics International]
Nontrivial Bookkeeping: a mechanical PerspectiveRobert Fischer and Dieter Braun
Physica A 324:266-271 (2003)
Transfer Potentials shape and equilibrate Monetary SystemsRobert Fischer and Dieter Braun
Physica A 321:605-618 (2003)
Trapping of DNA by Thermophoretic Depletion and ConvectionDieter Braun and Albert Libchaber
Physical Review Letters 89:188103 (2002)
[Article in Physics Today page 1, page 2][Biophotonics International][New Scientist]
Computer-based Photon Counting Lock-In for Phase Detection at the Shot Noise LimitDieter Braun and Albert Libchaber
Optics Letters 27:1418-1420 (2002)
Protein detection by optical shift of a resonant microcavityF. Vollmer, D. Braun, A. Libchaber, M. Khoshsima, I. Teraok and S. Arnold
Applied Physics Letters 80:4057-4059 (2002)
Capacitive Stimulation of Mammalian Cells on Silicon Chips imaged at Optical Resolution with Voltage-Sensitive DyesDieter Braun, PhD thesis at the Technische Universität München (2000)
Fluorescence Interferometry of Neuronal Cell Adhesion on Microstructured Silicon.Dieter Braun and Peter Fromherz
Physical Review Letters 81:5241-5244 (1998)
Fluorescence Interference-Contrast Microscopy of Cell Adhesion on Oxidized Silicon.D. Braun, P. Fromherz
Applied Physics A 65:341-348 (1997)
Untersuchung der Struktur der Silizium-Neuron-Kopplung durch FluoreszenzfarbstoffeDieter Braun. Diplomarbeit at the Technische Universität München (1996)