Pregled bibliografske jedinice broj: 1079556
UTJECAJ INERTNOG ELEKTROLITA NA OKSIDO- REDUKCIJSKA SVOJSTVA KOMPLEKSA CINKA SA HIDRAZIDNIM DERIVATOM DIPIKOLINSKE KISELINE
UTJECAJ INERTNOG ELEKTROLITA NA OKSIDO- REDUKCIJSKA SVOJSTVA KOMPLEKSA CINKA SA HIDRAZIDNIM DERIVATOM DIPIKOLINSKE KISELINE // Book of Abstracts 18th Ružička Days TODAY SCIENCE – TOMORROW INDUSTRY / Jukić, Ante (ur.).
Zagreb : Osijek: Hrvatsko društvo kemijskih inženjera i tehnologa (HDKI), 2020. str. 32-32 (poster, međunarodna recenzija, sažetak, znanstveni)
CROSBI ID: 1079556 Za ispravke kontaktirajte CROSBI podršku putem web obrasca
Naslov
UTJECAJ INERTNOG ELEKTROLITA NA OKSIDO-
REDUKCIJSKA SVOJSTVA KOMPLEKSA CINKA SA
HIDRAZIDNIM DERIVATOM DIPIKOLINSKE KISELINE
(THE EFFECT OF INERT ELECTROLYTE ON OXIDO-
REDUCTION PROPERTIES OF ZINC COMPLEX WITH
DIPICOLINIC ACID HYDRAZIDE DERIVATIVE)
Autori
Iličić, Klara ; Šafarik, Tatjana ; Balić, Ivana ; Balić, Tomislav ; Medvidović-Kosanović, Martina
Vrsta, podvrsta i kategorija rada
Sažeci sa skupova, sažetak, znanstveni
Izvornik
Book of Abstracts 18th Ružička Days TODAY SCIENCE – TOMORROW INDUSTRY
/ Jukić, Ante - Zagreb : Osijek : Hrvatsko društvo kemijskih inženjera i tehnologa (HDKI), 2020, 32-32
ISBN
978-953-6894-75-8
Skup
18. Ružičkini dani "Danas znanost - sutra industrija"
Mjesto i datum
Vukovar, Hrvatska, 16.09.2020. - 18.09.2020
Vrsta sudjelovanja
Poster
Vrsta recenzije
Međunarodna recenzija
Ključne riječi
inert electrolyte, voltammetry, metal complexes
Sažetak
Hydrazide derivatives of dipicolinic acid contain a large number of potential donor atoms which are capable of coordinating to the metal center in diverse arrangements [1]. Previous studies have shown that Zn dipicolinic acid complexes exhibit effective insulin-mimetic activity [2]. The main goal of this study was to examine the effect of three different inert electrolytes (LiCl, KNO3 and KCl) on the oxido- reduction properties of zinc complex with dipicolinic acid hydrazide derivative (Zn2L2), with two voltammetric techniques (cyclic and differential pulse voltammetry). The measurements were performed using the three electrode system which included a working glassy carbon electrode, counter electrode platinum wire and Ag/AgCl reference electrode. Before each measurement, the surface of the working electrode was polished with α-Al2O3 suspension. The system was purged with high purity argon Ar 5 (φAr = 99.999 %) to accomplish the inert atmosphere. Cyclic voltammograms of the studied zinc complex showed one oxidation peak in all three investigated electrolytes indicating an irreversible oxidation process. The oxidation peak current increased with the increase of scan rate and the highest oxidation peak current was observed for KCl. Differential pulse voltammograms also revealed one oxidation peak, in all three electrolytes. The oxidation peak decreased with successive scans, which confirmes adsorption of the zinc complex oxidation product on the surface of the glassy carbon electrode.
Izvorni jezik
Engleski
Znanstvena područja
Kemija
POVEZANOST RADA
Ustanove:
Sveučilište u Osijeku - Odjel za kemiju
Profili:
Tatjana Šafarik
(autor)
Martina Medvidović Kosanović
(autor)
Tomislav Balić
(autor)
Ivana Balić
(autor)