1 |
DNA Thermal Stability Depends on Solvent Viscosity Stellwagen NC, Stellwagen E Journal of Physical Chemistry B, 123(17), 3649, 2019 |
2 |
Electrophoretic Mobilities of the Charge Variants of DNA and Other Polyelectrolytes: Similarities, Differences, and Comparison with Theory Stellwagen NC Journal of Physical Chemistry B, 121(9), 2015, 2017 |
3 |
The free solution mobility of DNA and other analytes varies as the logarithm of the fractional negative charge Stellwagen NC, Peters JP, Dong Q, Maher LJ, Stellwagen E Electrophoresis, 35(12-13), 1855, 2014 |
4 |
Quantitative analysis of cation binding to the adenosine nucleotides using the Variable Ionic Strength method: Validation of the Debye-Huckel-Onsager theory of electrophoresis in the absence of counterion binding Stellwagen E, Stellwagen NC Electrophoresis, 28(7), 1053, 2007 |
5 |
Curved DNA molecules migrate anomalously slowly in polyacrylamide gels even at zero gel concentration Stellwagen NC Electrophoresis, 27(5-6), 1163, 2006 |
6 |
Effect of organic cosolvents on the free solution mobility of curved and normal DNA molecules Lu YJ, Stellwagen E, Stellwagen NC Electrophoresis, 27(8), 1462, 2006 |
7 |
Free solution mobility of small single-stranded oligonucleotides with variable charge densities Dong Q, Stellwagen E, Dagle JM, Stellwagen NC Electrophoresis, 24(19-20), 3323, 2003 |
8 |
Sequence-dependent bending in plasmid pUC19 Stellwagen NC Electrophoresis, 24(19-20), 3467, 2003 |
9 |
The free solution mobility of DNA in Tris-acetate-EDTA buffers of different concentrations, with and without added NaCl Stellwagen E, Stellwagen NC Electrophoresis, 23(12), 1935, 2002 |
10 |
Modeling the gel electrophoresis of short duplex DNA by Brownian dynamics: Cubic gel lattice with direct interaction Allison SA, Li ZY, Reed D, Stellwagen NC Electrophoresis, 23(16), 2678, 2002 |