2021
DOI: 10.1002/ejic.202100817
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Ruthenium (II) Complexes Bearing Heteroleptic Terpyridine Ligands: Synthesis, Photophysics and Solar Energy Conversion

Abstract: Heteroleptic ruthenium (II) complexes featuring donor functionalized phenyl‐terpyridine (ph‐tpy) and a monocarboxylic‐(ph‐tpy)/(tpy) are synthesized and characterized. Reactions of ruthenium (II) precursors at 80 °C favored heteroleptic complexes formation over the homoleptic side products. Visible light excitation of these complexes resulted in the metal‐to‐ligand charge transfer (MLCT) transitions. The inter‐planar torsional angle between the atoms of donor functionalized phenyl ring and the central pyridine… Show more

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Cited by 12 publications
(20 citation statements)
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“…[76][77][78] The wide adaptability of TiO 2 as photoanodes in DSSCs has promoted it as an interesting ETL material in PSCs. 79,80 TiO 2 , which is an n-type wide bandgap semiconductor (i.e., E g = 3.2 eV with CB edge level at À4.2 eV and VB edge level at À7.0 eV), is one of the most transparent materials to visible light and offers electronically favourable band edge alignment with most of the known perovskite absorbers. Usually, a compact TiO 2 film is used as the hole-blocking layer in PSCs.…”
Section: Inorganic Etlsmentioning
confidence: 99%
“…[76][77][78] The wide adaptability of TiO 2 as photoanodes in DSSCs has promoted it as an interesting ETL material in PSCs. 79,80 TiO 2 , which is an n-type wide bandgap semiconductor (i.e., E g = 3.2 eV with CB edge level at À4.2 eV and VB edge level at À7.0 eV), is one of the most transparent materials to visible light and offers electronically favourable band edge alignment with most of the known perovskite absorbers. Usually, a compact TiO 2 film is used as the hole-blocking layer in PSCs.…”
Section: Inorganic Etlsmentioning
confidence: 99%
“…Where ∅(inje.) and nc are electron injection efficiency and electron collect efficiency, respectively [17].…”
Section: -Methods and Toolsmentioning
confidence: 99%
“…Preparation of [Ru(tpy 4'À COOMe )(C^C)(NCCH 3 )][PF 6 ] 2 [2] The general procedure starting from [(η 6 -p cymene)-Ru(C^C)(I)][I] (0.150 g, 0.22 mmol), tpy 4'À COOMe (0.070 g, 0.24 mmol), silver nitrate (0.041 g, 0.24 mmol) and dry-degassed acetonitrile (25 mL) afforded [2] as hygroscopic red solids (0.068 g, 0.075 mmol). Yield: 34.31 %.…”
Section: Preparation Of [Ru(tpymentioning
confidence: 99%
“…[10] Subsequently, the reaction of (I) with ([(η 6 -p cymene)-Ru(Cl 2 )] 2 under refluxing acetonitrile afforded ([(η 6 -p cymene)-Ru(C^C)(I)][I]. [6c] Further, its reaction with ester-functionalized terpyridine ligands ( R tpy; R = 4'-PhCOOCH 3 or 4'-COOCH 3 ) in acetonitrile rendered the substitution of p-cymene by R tpy to afford [1] and [2], respectively.…”
Section: Syntheses and Characterizationmentioning
confidence: 99%
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