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721.
722.
Sanja B. Kokanov Nenad R. Filipović Aleksandar Višnjevac Milan Nikolić Irena Novaković Goran Janjić Berta Barta Holló Sandra Ramotowska Paulina Nowicka Mariusz Makowski Özlem Uğuz Atıf Koca Tamara R. Todorović 《应用有机金属化学》2023,37(1):e6942
Interest in Cd complexes has been growing in recent years. Cd complexes are considered a potential solution in the search for novel antibiotics that can fight antimicrobial resistance. In addition, Cd complexes draw attention to material chemistry. The main objective of this work was to prepare the first Cd(II) complexes with anionic forms of pyridine-based thiazolyl hydrazone (THs) ligands HLS2 [(E)-4-(4-methoxyphenyl)-2-(2-[pyridine-2-ylmethylene]hydrazinyl)thiazole] and HLS3 [(E)-2-(2-[pyridine-2-ylmethylene]hydrazinyl)-4-(p-tolyl)thiazole] and perform their structural and spectroscopic characterization, as well as stability in solution and upon heating. Studies related to their biological activities and possible electrochromic applications are also being conducted. Complexes [Cd(HLS2)2] ( 1 ) and [Cd(HLS3)2] ( 2 ) have been characterized by a single-crystal X-ray diffraction and computational analysis of intermolecular interactions responsible for their solid-state structures was performed. Thermal stability of 1 and 2 in the solid-state was analyzed by TGA/MS, where as their solution stability was determined by the spectrophotometric titration method. Electrochemical and in situ UV–Vis spectroelectrochemical analyses of 1 and 2 were carried out to determine redox mechanisms and the influence of the substituents and electrolytes on their redox responses. The antioxidant capacity of both complexes was tested in antioxidant assays, while their antimicrobial activity was tested against five Gram-positive and four Gram-negative bacteria, as well as against three fungi. The obtained results indicate their potent antioxidant capacity. The antimicrobial activity of investigated compounds on almost all tested bacterial strains was stronger than that of the standard antibiotic erythromycin. The results of docking studies indicate that the minor groove DNA is the possible biological target of 1 and 2 . 相似文献
723.
Dr. Irena Senkovska Dr. Volodymyr Bon Dr. Leila Abylgazina Dr. Matthias Mendt Jan Berger Dr. Gregor Kieslich Prof. Petko Petkov Jhonatan Luiz Fiorio Dr. Jan-Ole Joswig Prof. Thomas Heine Larissa Schaper Christopher Bachetzky Prof. Rochus Schmid Prof. Roland A. Fischer Prof. Andreas Pöppl Prof. Eike Brunner Prof. Dr. Stefan Kaskel 《Angewandte Chemie (International ed. in English)》2023,62(33):e202218076
Flexible porous frameworks are at the forefront of materials research. A unique feature is their ability to open and close their pores in an adaptive manner induced by chemical and physical stimuli. Such enzyme-like selective recognition offers a wide range of functions ranging from gas storage and separation to sensing, actuation, mechanical energy storage and catalysis. However, the factors affecting switchability are poorly understood. In particular, the role of building blocks, as well as secondary factors (crystal size, defects, cooperativity) and the role of host–guest interactions, profit from systematic investigations of an idealized model by advanced analytical techniques and simulations. The review describes an integrated approach targeting the deliberate design of pillared layer metal–organic frameworks as idealized model materials for the analysis of critical factors affecting framework dynamics and summarizes the resulting progress in their understanding and application. 相似文献
724.
Ciglenečki Irena Orlović-Leko Palma Vidović Kristijan Simonović Niki Marguš Marija Dautović Jelena Mateša Sarah Galić Ivo 《Journal of Solid State Electrochemistry》2023,27(7):1781-1793
Journal of Solid State Electrochemistry - This paper describes the application of a methodology, which primarily involves low-cost voltammetry, to rapidly track the reactivity (i.e. surfactant... 相似文献
725.
George Georgiev Anna Tzoneva Lyudmil Lyutov Stefko Iliev Irena Kamenova Ventseslava Georgieva Elena Kamenska Andreas Bund 《Macromolecular Symposia》2004,210(1):393-401
The precipitation temperature (Tpr) value of aqueous poly(dimethylamino-ethoxyacryloyl-propylsulphonate) (PDMAPS) solutions decreases with the rise of electric field intensity both in the absence and in the presence of a low molecular salt. This electrostimulated Tpr shift is explained qualitatively by means of the model taking into account both the dominating intermacromolecular dipole-dipole interaction and the dipole cluster formation. 相似文献