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showing 10 items of 1241 documents
CCDC 1484385: Experimental Crystal Structure Determination
2018
Related Article: Lucas H. G. Kalinke, Jocielle C. O. Cardoso, Renato Rabelo, Ana K. Valdo, Felipe T. Martins, Joan Cano, Miguel Julve, Francesc Lloret, Danielle Cangussu|2018|Eur.J.Inorg.Chem.||816|doi:10.1002/ejic.201701177
CCDC 1431126: Experimental Crystal Structure Determination
2015
Related Article: Jeremy D. Erickson, Petra Vasko, Ryan D. Riparetti, James C. Fettinger, Heikki M. Tuononen, Philip P. Power|2015|Organometallics|34|5785|doi:10.1021/acs.organomet.5b00884
CCDC 750296: Experimental Crystal Structure Determination
2010
Related Article: S.-O.Hauber, Jang Woo Seo, M.Niemeyer|2010|Z.Anorg.Allg.Chem.|636|750|doi:10.1002/zaac.200900482
CCDC 694346: Experimental Crystal Structure Determination
2010
Related Article: J.Suarez-Varela, J.M.Moreno, I.B.Maimoun, F.Lloret, J.Mrozinski, R.Kivekas, E.Colacio|2009|Cryst.Growth Des.|9|4102|doi:10.1021/cg9003438
CCDC 1899330: Experimental Crystal Structure Determination
2020
Related Article: Ondřej Jurček, Rakesh Puttreddy, Filip Topić, Pia Jurček, Pezhman Zarabadi-Poor, Hendrik V. Schröder, Radek Marek, Kari Rissanen|2020|Cryst.Growth Des.|20|4193|doi:10.1021/acs.cgd.0c00532
CCDC 750297: Experimental Crystal Structure Determination
2010
Related Article: S.-O.Hauber, Jang Woo Seo, M.Niemeyer|2010|Z.Anorg.Allg.Chem.|636|750|doi:10.1002/zaac.200900482
CCDC 1036416: Experimental Crystal Structure Determination
2015
Related Article: Petra Vasko, Shuai Wang, Heikki M. Tuononen, Philip P. Power|2015|Angew.Chem.,Int.Ed.|54|3802|doi:10.1002/anie.201411595
CCDC 140963: Experimental Crystal Structure Determination
2000
Related Article: K.Ejsmont, J.Kyziol, E.Nowakowska, J.Zaleski|2000|Acta Crystallogr.,Sect.C:Cryst.Struct.Commun.|56|93|doi:10.1107/S0108270199013190
CCDC 2090124: Experimental Crystal Structure Determination
2021
Related Article: Chris Gendy, J. Mikko Rautiainen, Aaron Mailman, Heikki M. Tuononen|2021|Chem.-Eur.J.|27|14405|doi:10.1002/chem.202102804
Entrapment of amino acids in gas phase surfactant assemblies: The case of tryptophan confined in positively charged (1R,2S)-dodecyl (2-hydroxy-1-meth…
2017
The ability of positively charged aggregates of the surfactant (1R,2S)‐dodecyl (2‐hydroxy‐1‐methyl‐2‐phenylethyl))dimethylammonium bromide (DMEB) to incorporate D-tryptophan or L-tryptophan in the gas phase has been investigated by electrospray ion mobility mass spectrometry (ESIâIMâMS). Strongly impacted by the pH of the electrosprayed solutions, both protonated (T+) and deprotonated (T-) tryptophan are effectively included into the aggregates, whereas, tryptophan in zwitterionic (T0) form is practically absent in singly charged DMEB aggregates but can be found in multiply charged ones. The ability to incorporate tryptophan increases with the aggregation number and charge state of aggr…