Search results for "Trim"
showing 10 items of 1942 documents
CCDC 992712: Experimental Crystal Structure Determination
2014
Related Article: Anssi Peuronen, Samu Forsblom, Manu Lahtinen|2014|Chem.Commun.|50|5469|doi:10.1039/C3CC49663E
CCDC 1590298: Experimental Crystal Structure Determination
2018
Related Article: Petr Švec, Hélène Cattey, Zdeňka Růžičková, Josef Holub, Aleš Růžička, Laurent Plasseraud|2018|New J.Chem.|42|8253|doi:10.1039/C7NJ05058E
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
CCDC 764362: Experimental Crystal Structure Determination
2010
Related Article: T.Voss, Chao Chen, G.Kehr, E.Nauha, G.Erker, D.W.Stephan|2010|Chem.-Eur.J.|16|3005|doi:10.1002/chem.200903483
CCDC 208515: Experimental Crystal Structure Determination
2006
Related Article: M.Wojtas, G.Bator, R.Jakubas, J.Zaleski|2003|J.Phys.:Condens.Matter|15|5765|doi:10.1088/0953-8984/15/33/310
CCDC 1557841: Experimental Crystal Structure Determination
2017
Related Article: Filip Topić, Rakesh Puttreddy, J. Mikko Rautiainen, Heikki M. Tuononen, Kari Rissanen|2017|CrystEngComm|19|4960|doi:10.1039/C7CE01381G
CCDC 1872784: Experimental Crystal Structure Determination
2019
Related Article: Petra Vasko, M. Ángeles Fuentes, Jamie Hicks, Simon Aldridge|2019|Dalton Trans.|48|2896|doi:10.1039/C9DT00228F
CCDC 1949613: Experimental Crystal Structure Determination
2020
Related Article: Justin J. Dressler, Abel Cárdenas Valdivia, Ryohei Kishi, Gabriel E. Rudebusch, Austin M. Ventura, Brian E. Chastain, Carlos J. Gómez-García, Lev N. Zakharov, Masayoshi Nakano, Juan Casado, Michael M. Haley|2020|Cell Press: Chem|6|1353|doi:10.1016/j.chempr.2020.02.010
Syntheses, X-ray structures, and physicochemical properties of phenoxo-bridged dinuclear nickel(II) complexes: kinetics of transesterification of 2-h…
2009
Four dinuclear nickel(II) complexes [Ni(II)(2)(L(1))(O(2)CMe)(2)(H(2)O)(2)][PF(6)].MeOH.3H(2)O (1), [Ni(II)(2)(L(1))(O(2)CMe)(2)(NCS)] (2), [Ni(II)(2)(L(2))(O(2)CMe)(2)(MeOH)(H(2)O)][ClO(4)] (3), and [Ni(II)(2)(L(2))(O(2)CMe)(2)(MeOH)(H(2)O)][BPh(4)].3MeOH.H(2)O (4) have been synthesized [HL(1): 2,6-bis[N-methyl-N-(2-pyridylethyl)amino]-4-methylphenol; HL(2): 2,6-bis[3-(pyridin-2-yl)pyrazol-1-ylmethyl]-4-methylphenol]. Complexes 1, 3, and 4 are new while complex 2 was reported previously by Fenton and co-workers (the structure of 2 was presented but no physicochemical properties of this complex were reported; in this work such studies have been completed). X-ray crystallographic analyses of…
A Silicone Ventricular Catheter Coated with a Combination of Rifampin and Trimethoprim for the Prevention of Catheter-related Infections
1998
So-called antiinfective catheters which are generated by incorporation of antimicrobial substances into polymers appear to be effectful devices in the prevention of catheter related infections. Such devices mainly act by prevention of bacterial colonization of the catheter surface rather than by inhibition of adherence. In a preceding study, we developed a rifampin-containing silicone catheter for the prevention of ventricular shunt infection. In the present study, this work was continued with a combination of antimicrobials incorporated in silicone ventricular catheters to reduce the risk of rifampin resistance and to expand the antimicrobial spectrum. We found that the drug release kineti…