Entries of Neusüß, Christian on the publication server
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Number of items: 5.
2021
Römer, Jennifer
, Kiessig, Steffen, Moritz, Bernd and Neusüß, Christian
(2021)
Improved CE(SDS)‐CZE‐MS method utilizing an 8‐port nanoliter valve.
ELECTROPHORESIS 42 (4), pp. 374-380.
Fulltext not available.
, Kiessig, Steffen, Moritz, Bernd and Neusüß, Christian
(2021)
Improved CE(SDS)‐CZE‐MS method utilizing an 8‐port nanoliter valve.
ELECTROPHORESIS 42 (4), pp. 374-380.
Fulltext not available.
Römer, Jennifer, Stolz, Alexander, Kiessig, Steffen, Moritz, Bernd and Neusüß, Christian
(2021)
Online top-down mass spectrometric identification of CE(SDS)-separated antibody fragments by two-dimensional capillary electrophoresis.
Journal of Pharmaceutical and Biomedical Analysis 201, p. 114089.
Fulltext not available.
2020
Stolz, Alexander
, Hedeland, Ylva
, Salzer, Liesa, Römer, Jennifer, Heiene, Reidun, Leclercq, Laurent
, Cottet, Hervé
, Bergquist, Jonas and Neusüß, Christian
(2020)
Capillary Zone Electrophoresis-Top-Down Tandem Mass Spectrometry for In-Depth Characterization of Hemoglobin Proteoforms in Clinical and Veterinary Samples.
Analytical Chemistry 92 (15), pp. 10531-10539.
Fulltext not available.
, Hedeland, Ylva
, Salzer, Liesa, Römer, Jennifer, Heiene, Reidun, Leclercq, Laurent
, Cottet, Hervé
, Bergquist, Jonas and Neusüß, Christian
(2020)
Capillary Zone Electrophoresis-Top-Down Tandem Mass Spectrometry for In-Depth Characterization of Hemoglobin Proteoforms in Clinical and Veterinary Samples.
Analytical Chemistry 92 (15), pp. 10531-10539.
Fulltext not available.
2019
Römer, Jennifer, Montealegre, Cristina, Schlecht, Johannes, Kiessig, Steffen, Moritz, Bernd and Neusüß, Christian
(2019)
Online mass spectrometry of CE (SDS)-separated proteins by two-dimensional capillary electrophoresis.
Analytical and Bioanalytical Chemistry 411 (27), pp. 7197-7206.
Fulltext not available.
2008
Matysik, Frank-Michael, Neusüß, Christian and Pelzing, Matthias
(2008)
Fast capillary electrophoresis coupled with time-of-flight mass spectrometry under separation conditions of high electrical field strengths.
The Analyst 133 (12), p. 1764.
Fulltext not available.
