electrochemical studies
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2022 ◽  
Author(s):  
Anurag Mukherjee ◽  
Shubhankar Barman ◽  
Anupam Ghosh ◽  
Saptarshi Chakraborty ◽  
Ayan Datta ◽  
...  

This article reports H-bonding driven supramolecular polymerization of naphthalimide(A)-thiophene(D)-naphthalimide(A) (ADnA, n = 1-4) conjugated ambipolar π-systems and its remarkable impact on the room temperature ferroelectricity. Electrochemical studies confirm the ambipolar...


Molecules ◽  
2021 ◽  
Vol 26 (24) ◽  
pp. 7596
Author(s):  
Pavel S. Gribanov ◽  
Dmitry A. Loginov ◽  
Dmitry A. Lypenko ◽  
Artem V. Dmitriev ◽  
Sergey I. Pozin ◽  
...  

Three new benzothiadiazole (BTD)-containing luminophores with different configurations of aryl linkers have been prepared via Pd-catalyzed cross-coupling Suzuki and Buchwald–Hartwig reactions. Photophysical and electroluminescent properties of the compounds were investigated to estimate their potential for optoelectronic applications. All synthesized structures have sufficiently high quantum yields in film. The BTD with aryl bridged carbazole unit demonstrated the highest electrons and holes mobility in a series. OLED with light-emitting layer (EML) based on this compound exhibited the highest brightness, as well as current and luminous efficiency. The synthesized compounds are not only luminophores with a high photoluminescence quantum yield, but also active transport centers for charge carriers in EML of OLED devices.


Chemosensors ◽  
2021 ◽  
Vol 9 (12) ◽  
pp. 352
Author(s):  
Ivana Škugor Rončević ◽  
Nives Vladislavić ◽  
Nabanita Chatterjee ◽  
Vesna Sokol ◽  
Clive L. Oliver ◽  
...  

The 6-oxonicotinate (6-Onic) salts of a one-dimensional cationic cobalt(II) or nickel(II) coordination polymers with 4,4′-bipyridine (4,4′-bpy), namely {[Co(4,4′-bpy)(H2O)4](6-Onic)2·2H2O}n (1) and {[Ni(4,4′-bpy)(H2O)4](6-Onic)2·2H2O}n (2), were prepared hydrothermally by reactions of cobalt(II) nitrate hexahydrate or nickel(II) nitrate hexahydrate, respectively, 6-hydroxynicotinic acid and 4,4′-bipyridine in a mixture of ethanol and water. In the hydrogen-bonded frameworks of 1 and 2, the one-dimensional polymeric chains of {[M(4,4′-bpy)(H2O)4]2+}n (M = Co, Ni), the 6-oxonicotinate anions and the lattice water molecules were assembled via strong intermolecular O–H···O and N–H···O hydrogen bonds and π–π interactions, leading to the formation of the representative hydrogen-bond ring motifs: trimeric R23(10) motif, the centrosymmetric tetrameric R24(8) and R24(12) motifs and the pentameric R45(12) motif. The isostructural coordination polymers 1 and 2 exhibited a different electrochemical behavior, as observed by cyclic voltammetry, which can be attributed to the nature of the metal ions (cobalt(II) vs. nickel(II)).


2021 ◽  
Author(s):  
Antoine Bohn ◽  
Juan José Moreno ◽  
Pierre Thuéry ◽  
Marc Robert ◽  
Orestes Rivada Wheelaghan

A pyrazole–based ligand substituted with terpyridine groups at the 3 and 5positions has been synthesized to form the dinuclear cobalt complex 1, that electrocatalytically reduces carbon dioxide (CO2) to carbon monoxide (CO) in the presence of Brønsted acids in DMF. Chemical, electrochemical and UV–vis spectro–electrochemical studies under inert atmosphere indicate a single 2 electron reduction process of complex 1 at first, followed by a 1 electron reduction at the ligand. Infrared spectro–electrochemical studies under CO2 and CO atmosphere allowed us to identify a reduced CO–containing dicobalt complex which results from the electroreduction of CO2. In the presence of trifluoroethanol (TFE), electrocatalytic studies revealed single–site mechanism with up to 94 % selectivity towards CO formation when 1.47 M TFE were present, at –1.35 V vs Saturated Calomel Electrode in DMF (0.39 V overpotential). The low faradaic efficiencies obtained (<50%) are attributed to the generation of CO–containing species formed during the electrocatalytic process, which inhibit the reduction of CO2.


2021 ◽  
Vol 279 ◽  
pp. 119683
Author(s):  
Li Ding ◽  
Yongde Yan ◽  
Valeri Smolenski ◽  
Alena Novoselova ◽  
Yun Xue ◽  
...  

2021 ◽  
pp. 100251
Author(s):  
Damian C. Onwudiwe ◽  
Thato Tshabalala ◽  
Elias E. Elemike ◽  
Enyioma C. Okpara

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