Auflistung: nach Organisationseinheit Institut für Chemie neuer Materialien


Oder wählen Sie unten einen Buchstaben aus, um mit der Suche zu beginnen
0-9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z
348 bis 367 von 613 Treffer < zurück   nächste >
ErscheinungsdatumTitelAutor(en)
2023M6O4(OH)(4) of M = Sn, Pb: Single Crystal Growth and Crystal Structure Determinations Far Away from RoutineReuter, Hans ; Schroeder, Dirk; Peckskamp, Kristina
2020Magnetic and Electronic Properties of Highly Mn-Doped beta-NaGdF4 and beta-NaEuF4 Nanoparticles with a Narrow Size DistributionSchneider, Lilli; Wehmeier, Jannis; Wiedwald, Ulf; Rodewald, Jari ; Galakhov, Vadim R.; Udintseva, Margarita S.; Mesilov, Vitaly; Radu, Florin; Luo, Chen; Klare, Johann P.; Steinhoff, Heinz-Jurgen ; Haase, Markus ; Kuepper, Karsten 
2022Materials and systems for polymer-based Metallocene batteries: Status and challengesBeladi-Mousavi, Seyyed Mohsen; Walder, Lorenz 
2016Maßgeschneiderte Aufwärtskonvertierungsnanopartikel zur Detektion von Proteinwechselwirkungen in lebenden ZellenDrees, Christoph; Raj, Athira Naduviledathu; Kurre, Rainer ; Busch, Karin B.; Haase, Markus ; Piehler, Jacob 
2021Membrane Permeability and Its Activation Energies in Dependence on Analyte, Lipid, and Phase Type Obtained by the Fluorescent Artificial Receptor Membrane AssayNilam, Mohamed; Collin, Solene; Karmacharya, Shreya; Hennig, Andreas ; Nau, Werner M.
2007Methyl 1-deoxy-1-(N-1-thyminyl)-beta-D-psicofuranosideRoivainen, Jarkko; Reuter, Hans ; Mikhailopulo, Igor A.; Eickmeier, Henning
2014Methylphosphonic acid, CH3PO(OH)2Reuter, H. ; Reichelt, M.
2015Mitsunobu Alkylation of Cancerostatic 5-Fluorouridine with (2E)-10-Hydroxydec-2-enoic Acid, a Fatty Acid from Royal Jelly with Multiple Biological ActivitiesOttenhaus, Vanessa; Rosemeyer, Helmut 
2013Mitsunobu Reactions of 5-Fluorouridine with the Terpenols Phytol and Nerol: DNA Building Blocks for a Biomimetic Lipophilization of Nucleic AcidsMalecki, Edith; Knies, Christine; Werz, Emma; Rosemeyer, Helmut 
2006Modification of mesoporous TiO2 electrodes with cross-linkable B-12 derivativesAsaftei, Simona; Walder, Lorenz 
2002Modified purine nucleosides as dangling ends of DNA duplexes: the effect of the nucleobase polarizability on stacking interactionsRosemeyer, H ; Seela, F
1997Molecular and supramolecular surface modification of nanocrystalline TiO2 films: Charge-separating and charge-injecting devicesGerfin, T; Gratzel, M; Walder, L 
1997Molecular photovoltaic devices mimic photosynthesisMoser, JE; Bonhote, P; Walder, L ; Gratzel, M
2000Molecular suppression of the pimerization of viologens (=4,4 `-bipyridinium derivatives) attached to nanocrystalline titanium dioxide thin-film electrodesFelderhoff, M; Heinen, S; Molisho, N; Webersinn, S; Walder, L 
2010Monolayer Structure of Arachidic Acid on GraphiteThomas, Loji K.; Kuehnle, Angelika; Rode, Sebastian; Beginn, Uwe ; Reichling, Michael 
2000Monoorganotin-polyoxometal compounds - Part 1. Synthesis and crystal structure of [((PrSn)-Pr-i)(11)((VO)-O-IV)O-14(OH)(6)]Cl center dot 2DMF center dot H2O. The first example in a series of monoorganotin-polyoxometal compounds with icosahedral metal arrangement and various contents of tin and vanadiumKastner, G; Reuter, H 
2005Monoorganotin-polyoxometal-compounds. III. Synthesis and crystal structure of [((BuSn)-Bu-n)(9)((VO)-O-V)(3)O-14(OH)(6)Cl-2(dmso)(2)]center dot 3DMSOIzaaryene, M; Kastner, G; Reuter, H 
2010Monoorganotin-polyoxometal-compounds. Part IV: Na-2[((PrSn3)-Pr-i)(OV)(4)O-10(OH)(3)]center dot 5H(2)O center dot 3DMSO, a novel branched tetravanadate(V) stabilized by a trimeric monoorganotin-oxo-hydroxo unitReuter, Hans ; Izaaryene, Maher
2000Monoorganotin-polyoxometal-compounds: II. Isolation and structural characterization of compounds containing the unprecedented monoorganotin molybdate anion [(RSn)(4)(MoO4)(4)O(OH)(3)](-)Kastner, G; Reuter, H 
2000Monoorganotin-polyoxometal-compounds:: II.: Isolation and structural characterization of compounds containing the unprecedented monoorganotin molybdate anion [(RSn)<sub>4</sub>(MoO<sub>4</sub>)<sub>4</sub>O(OH)<sub>3</sub>]<SUP> -</SUP>Kastner, G; Reuter, H