2021
DOI: 10.1021/acsaelm.1c00402
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Schiff Base Zinc(II) Complexes as Promising Emitters for Blue Organic Light-Emitting Diodes

Abstract: Organometallic blue fluorescent Zn­(II) Schiff base complexes are synthesized and explored computationally in order to use them in organic electroluminescent heterostructures. Characterization of these pyrazolone-based azomethine–zinc complexes was accomplished by various physicochemical techniques to get insight into their applicability as an active layer in light-emitting diodes. All the complexes demonstrate high thermal stability and remarkable photoluminescence both in solution and in the solid state with… Show more

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Cited by 50 publications
(40 citation statements)
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“…Similarly, zinc­(II)­salphen complexes have been introduced in polymer light-emitting diodes, exhibiting an EQE of 3.18%, a maximum current efficiency of 6.2 cd A –1 , and a maximum power efficiency of 4.4 lm W –1 . Another Zn­(II) complex with the ethylenediamine Schiff base ligand exhibits electroluminance in the blue region, and the corresponding OLED exhibits a current and power efficacy of only 6.6 cd A –1 and 2.9 lm W –1 , respectively . A similar Zinc complex of the Schiff base ligand prepared by Gusev shows high-performance blue OLED, reaching an EQE of 5%, a current efficacy of 7.6 cd A –1 , albeit at a high operating voltage of 13.8 V .…”
Section: Resultsmentioning
confidence: 95%
See 1 more Smart Citation
“…Similarly, zinc­(II)­salphen complexes have been introduced in polymer light-emitting diodes, exhibiting an EQE of 3.18%, a maximum current efficiency of 6.2 cd A –1 , and a maximum power efficiency of 4.4 lm W –1 . Another Zn­(II) complex with the ethylenediamine Schiff base ligand exhibits electroluminance in the blue region, and the corresponding OLED exhibits a current and power efficacy of only 6.6 cd A –1 and 2.9 lm W –1 , respectively . A similar Zinc complex of the Schiff base ligand prepared by Gusev shows high-performance blue OLED, reaching an EQE of 5%, a current efficacy of 7.6 cd A –1 , albeit at a high operating voltage of 13.8 V .…”
Section: Resultsmentioning
confidence: 95%
“…46 Another Zn(II) complex with the ethylenediamine Schiff base ligand exhibits electroluminance in the blue region, and the corresponding OLED exhibits a current and power efficacy of only 6.6 cd A −1 and 2.9 lm W −1 , respectively. 47 A similar Zinc complex of the Schiff base ligand prepared by Gusev shows high-performance blue OLED, reaching an EQE of 5%, a current efficacy of 7.6 cd A −1 , albeit at a high operating voltage of 13.8 V. 48 It is also important to note that our device is energy-efficient as it exhibits a low turn-on-voltage (V on ) of 2.5 V, suggesting balanced carrier transport and injection. The well-aligned energy levels between m-MTDATA and Zn-I result in such favorable charge carrier and exciton generation in the device.…”
Section: ■ Results and Discussionmentioning
confidence: 99%
“…Although the luminance and efficiency values of the resulting devices do not reach the maximum values for close structures [ 29 , 30 , 31 ], these preliminary results suggest that the title complexes have the potential for use as emissive layers in organic light-emitting diodes. However, the device architecture needs to be improved, by using perhaps a different host matrix, with better electron-transporting properties.…”
Section: Resultsmentioning
confidence: 96%
“…For example, based on Zn(II) complexes containing salicylaldiminate ligands, blue, greenish-white, and red emitters for organic photoelectronics with good stability and efficiency have been obtained [ 22 , 23 ]. Of particular interest are the Zn(II) complexes of azomethine ligands of 2-( N -tosylamino)benzaldehyde [ 24 , 25 ] and 3-methyl-1-phenyl-4-formylpyrazol-5-one [ 26 , 27 , 28 , 29 , 30 ] derivatives. Replacing the hydroxy group in the aldehyde fragment of azomethines with a 2-tosylamino group with the formation of the MN 4 coordination site leads to an increase in thermal stability (m.p.…”
Section: Introductionmentioning
confidence: 99%
“…In particular, zinc complexes with phenanthroline and Schiff bases exhibit cytotoxicity and selectivity towards cancer cells, and are also characterized by the possibility of forming reactive oxygen species and inducing lipid peroxidation [ 10 ]. In addition to cytotoxic properties, zinc(II) compounds with various ligands exhibit antioxidant and luminescent properties [ 11 , 12 ].…”
Section: Introductionmentioning
confidence: 99%