26194-27-4Relevant articles and documents
Study of the structure, prooxidative, and cytotoxic activity of some chelate copper(II) complexes
Petrovi?, Vladimir P.,?ivanovi?, Marko N.,Simijonovi?, Du?ica,Dovi?, Jelena,Petrovi?, Zorica D.,Markovi?, Sne?ana D.
, p. 2075 - 2083 (2017/10/05)
The six chelate N,O-copper(II) complexes were synthesised starting from salicylaldehyde anil Schiff bases, as ligands. Their structure is elucidated using experimental and theoretical tools. In vitro biological activities, i.e. cytotoxic and prooxidative
Influence of ferrocene and transition metals on the biological activities of Schiff bases
Shah, Faiz Ullah,Jamil, Maryam,Aslam, Javaria,Gul, Asghari,Akhter, Zareen,Mirza, Bushra
, p. 1112 - 1120 (2017/01/25)
A series of organic and organometallic Schiff bases bearing phenylferrocene and their six transition metal complexes have been prepared and tested for their potential biological applications by using antifungal, antibacterial, antitumor activities, toxici
Cu(2) schiff base complex as a highly efficient catalyst for the synthesis of polyhydroquinoline derivatives via hantzsch condensation in water
Vahdat, Seyed Mohammad
, p. 782 - 787 (2014/03/21)
In the present study, Cu(II) Schiff-base complex is introduced as a highly efficient and green solid catalyst for the unsymmetrical Hantzsch condensation through a four-component coupling of various aldehydes, dimedone, ethyl acetoacetate and ammonium ace
Synthesis, crystal structure and electronic properties of bis(N-2-bromophenyl-salicydenaminato)copper(II) complex
Vafazadeh, Rasoul,Hayeri, Vahid,Willis, Anthony C.
, p. 1810 - 1814 (2010/07/04)
A new series of complexes of the type bis(N-substituted-salicydenaminato)copper(II) (1-9), have been synthesized and characterized by IR, UV-Vis and elemental analysis methods. The molecular structure of bis(N-2-bromophenyl-salicydenaminato)copper(II) (6)
Formation of Coordination Compounds under Model Conditions of Frictional Contact
Kuzharov, A. S.,Kut'kov, A. A.,Suchkov, V. V.
, p. 1784 - 1786 (2007/10/02)
The model used was simultaneous thermal vaporisation in a vacuum of metals and active components of lubricants.Compounds are formed identical with those obtained under conditions of limiting friction.The mechanism of the formation of coordination compounds during friction involves local temperatures above 1000 deg C.