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Dirk Nolting

Explore the profile of Dirk Nolting including associated specialties, affiliations and a list of published articles. Areas
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Articles 14
Citations 470
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Recent Articles
1.
Kubik S, Goddard R, Kirchner R, Nolting D, Seidel J
Angew Chem Int Ed Engl . 2018 May; 40(14):2648-2651. PMID: 29712318
A neutral receptor that binds anions by hydrogen bonds even in water is the cyclopeptide reported in this article. This property results from the particular structure of the complex in...
2.
Nolting D, Malek R, Makarov A
Mass Spectrom Rev . 2017 Oct; 38(2):150-168. PMID: 29084367
This review is devoted to trapping mass spectrometry wherein ions are confined by electromagnetic fields for prolonged periods of time within limited volume, with mass measurement taking place within the...
3.
Frese C, Nolting D, Altelaar A, Griep-Raming J, Mohammed S, Heck A
J Am Soc Mass Spectrom . 2013 Apr; 24(11):1663-70. PMID: 23605687
Electron transfer dissociation (ETD) is commonly employed in ion traps utilizing rf fields that facilitate efficient electron transfer reactions. Here, we explore performing ETD in the HCD collision cell on...
4.
Frese C, Altelaar A, van den Toorn H, Nolting D, Griep-Raming J, Heck A, et al.
Anal Chem . 2012 Oct; 84(22):9668-73. PMID: 23106539
Increasing peptide sequence coverage by tandem mass spectrometry improves confidence in database search-based peptide identification and facilitates mapping of post-translational modifications and de novo sequencing. Inducing 2-fold fragmentation by combining...
5.
Michalski A, Damoc E, Lange O, Denisov E, Nolting D, Muller M, et al.
Mol Cell Proteomics . 2011 Dec; 11(3):O111.013698. PMID: 22159718
Although only a few years old, the combination of a linear ion trap with an Orbitrap analyzer has become one of the standard mass spectrometers to characterize proteins and proteomes....
6.
Frese C, Altelaar A, Hennrich M, Nolting D, Zeller M, Griep-Raming J, et al.
J Proteome Res . 2011 Mar; 10(5):2377-88. PMID: 21413819
Over the past decade peptide sequencing by collision induced dissociation (CID) has become the method of choice in mass spectrometry-based proteomics. The development of alternative fragmentation techniques such as electron...
7.
Nolting D, Ottosson N, Faubel M, Hertel I, Winter B
J Am Chem Soc . 2008 Jun; 130(26):8150-1. PMID: 18540604
The photoelectron spectra of aqueous imidazole are presented, and the N 1s and C 1s binding energies are assigned aided by density functional theory calculations. The chemical equivalency of the...
8.
Jagoda-Cwiklik B, Slavicek P, Nolting D, Winter B, Jungwirth P
J Phys Chem B . 2008 May; 112(25):7355-8. PMID: 18461993
Photoelectron spectroscopy and ab initio calculations employing a nonequilibrium polarizable continuum model were employed for determining the vertical ionization potential of aqueous protonated imidazole. The experimental value of 8.96 eV...
9.
Jagoda-Cwiklik B, Slavicek P, Cwiklik L, Nolting D, Winter B, Jungwirth P
J Phys Chem A . 2008 Mar; 112(16):3499-505. PMID: 18335914
Hydration of neutral and cationic imidazole is studied by means of ab initio and molecular dynamics calculations, and by photoelectron spectroscopy of the neutral species in a liquid microjet. The...
10.
Nolting D, Aziz E, Ottosson N, Faubel M, Hertel I, Winter B
J Am Chem Soc . 2007 Oct; 129(45):14068-73. PMID: 17949088
We demonstrate the applicability of X-ray photoelectron spectroscopy to obtain charge- and site-specific electronic structural information of biomolecules in aqueous solution. Changing the pH of an aqueous solution of lysine...