2021
DOI: 10.1021/acs.inorgchem.0c03788
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Emission Switching in the Near-Infrared by Reversible Trans–Cis Photoisomerization of Styrylbenzene-Conjugated Osmium Terpyridine Complexes

Abstract: A new array of homoleptic osmium(II) complexes based on styrylbenzene-conjugated terpyridine ligands (tpy-pvp-X) were synthesized and their photophysical, electrochemical, and photoisomerization behaviors thoroughly investigated in this work. Both electron-donating and -withdrawing substituents were incorporated onto a tpy-pvp-X (X = H, Me, Cl, NO 2 , and Ph) moiety to tune the optical properties and also the rate of photoisomerization behaviors in the complexes. All complexes display strong spin-allowed singl… Show more

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Cited by 5 publications
(6 citation statements)
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“…Preservation of the photoisomerisation quantum yield value for {metallocentre + photoswitch} molecular systems in comparison with the native photoswitch molecule is rare, 40,72 and the enhancement of this value is unique. 53 The literature is dominated by examples where photoisomerisation is partially 13,15,22,23,25,36,48 or completely 31,33,42,45,46 inhibited by the presence of the metal due to energy transfer, 34 competition with MLCT processes 16,18,24,32,54,55 and/or luminescence of the metallocentre, 52 redox process, 50 or steric hindrances. 29,30,38 Compounds LN, LC and complexes 1N-5N, 1C and 5C are completely non-emissive in solution upon UV irradiation, while 6N demonstrates very weak luminescence at ca.…”
Section: Optical and Photochemical Properties Of Lc Ln And Au(i) Comp...mentioning
confidence: 99%
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“…Preservation of the photoisomerisation quantum yield value for {metallocentre + photoswitch} molecular systems in comparison with the native photoswitch molecule is rare, 40,72 and the enhancement of this value is unique. 53 The literature is dominated by examples where photoisomerisation is partially 13,15,22,23,25,36,48 or completely 31,33,42,45,46 inhibited by the presence of the metal due to energy transfer, 34 competition with MLCT processes 16,18,24,32,54,55 and/or luminescence of the metallocentre, 52 redox process, 50 or steric hindrances. 29,30,38 Compounds LN, LC and complexes 1N-5N, 1C and 5C are completely non-emissive in solution upon UV irradiation, while 6N demonstrates very weak luminescence at ca.…”
Section: Optical and Photochemical Properties Of Lc Ln And Au(i) Comp...mentioning
confidence: 99%
“…To date, a number of complexes containing azobenzene as a reversible photoswitch have been reported in the literature for Pt( ii / iv ), 13–25 Ni( ii ), 14,26–28 Pd( ii ), 14,23,29,30 Re( i ), 31–33 Co( ii / iii ), 28,34 Fe( ii / iii ), 34–38 Zn( ii ), 36,38–43 Cu( i / ii ), 28,36,42,44 Cd( ii ), 38 Ir( iii ), 45,46 Rh( iii ), 47 and Ln( iii ), 48 and for ferrocene derivatives. 49–51 In contrast to azobenzene, stilbene organometallic derivatives are more often used not as photoswitches 52–55 but as building blocks for assembly of super- 56–60 and supramolecular systems, 61–64 as well as of π-conjugated systems which can show nonlinear optical effects. 65–71 However, examples of the combination of the Au( i ) centre with an azobenzene 72–76 or stilbene 56,57,66–68,70,77 photochromic moiety are still rare in the literature and most have not been studied as organometallic photoswitches.…”
Section: Introductionmentioning
confidence: 99%
“…Nishihara's group reported some terpyridine complexes of Ru(II) and Rh(III) coupled with photoactive azo unit [68]. Recently, our group initiated the isomerization studies of stilbene-appended terpyridine complexes of Fe(II), Ru(II) and Os(II) metals [30,31,33,59]. Photoisomerization behaviors of various heavier transition metal complexes (Re, Co, Rh, Ir, etc.)…”
Section: Photo-isomerization Studies Of the Complexesmentioning
confidence: 99%
“…Even though lots of studies were performed with purely organic stilbene derivatives, but analogous studies with their coordination complexes are comparatively limited in the literature [18][19][20][21][22]. Compared to organic compounds, metal complexes offer a greater variety of electronic structures, in relation to the coordination sphere, electronic configuration and oxidation state of the metal [23][24][25][26][27][28][29][30][31][32][33]. To mimic the function of photochemical molecular devices (such as photo switches) in metal complexes, one of the most effective strategies is to reversibly alter their properties by inducing conformational changes on the photo-responsive component appended on the ligands.…”
Section: Introductionmentioning
confidence: 99%
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