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首页> 外文期刊>Journal of the Chemical Society, Dalton Transactions. Inorganic Chemistry >Polynuclear osmium-dioxolene complexes: comparison of electrochemical and spectroelectrochemical properties with those of their ruthenium analogues
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Polynuclear osmium-dioxolene complexes: comparison of electrochemical and spectroelectrochemical properties with those of their ruthenium analogues

机译:多核-二氧戊烯配合物:与钌类似物的电化学和光谱电化学性质比较

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摘要

Reaction of [Os(bipy)_2Cl_2] (bipy = 2,2'-bipyridine) with the poly-dioxolene ligands 3,4,3',4'-tetrahydroxybiphenyl (H_4L~1), 2,3,6,7-trihydroxy-9-phenylxanthen-3-one (H_3L~2) or 2,3,6,7,10,11-hexahydroxytriphenylene (H_6L~3) afforded the complexes [{Os(bipy)_2}_2(#mu#-L~1)][PF_6]_2, [{Os(bipy)_2}_2(#mu#-L~2)][PF_6]_3, and the trinuclear complex [{Os(bipy)_2}_3(#mu#-L~3)][PF_6]_3 abbreviated as [Os_2(L~1)]~(2+), [Os_2(L~2)]~(3+) and [Os_2(L~3)]~(3+), respectively. In these complexes two or three {Os~(III)(bipy)_2(OO)} fragments are linked by the conjugated bridging ligands (where OO denotes a dioxolene binding site in any oxidation state). The complexes exhibit rich electrochemical behaviour, displaying a combination of metal-centred Os~(III)-Os~(II) couples (as reductions) and ligand-centred couples (as oxidations). UV/VIS/NIR spectroelectrochemical analysis was carried out on all three complexes in all accessible oxidation states, and the spectra were assigned with reference to the mononclear model complex [{Os~(III)(bipy)_2(cat)][PF_6] (H_2cat = catechol) which was also examined spectroelectrochemically, as well as being crystallographically characterised. The comparison with the previously described ruthenium analogues is interesting due to their different internal oxidation state distribution. Whereas the mononuclear complex [{Os~(III)(bipy)_2(cat)]~+ contains Os~(III) co-ordinated to a catecholate (oxidised metal, reduced ligand), the ruthenium analogue in the same oxidation state is [Ru~(II)(bipy)_2(sq)]~+ (sq = 1,2-benzosemiquinone monoaniom), I.e. reduced metal and oxidised ligand. The same pattern of behaviour persists in the dinuclear and trinuclear complexes, and leads to interesting differences in the electrochemical properties of the ruthenium and osmium congeners.
机译:[Os(bipy)_2Cl_2](bipy = 2,2'-联吡啶)与聚二氧戊烯配体3,4,3',4'-四羟基联苯(H_4L〜1),2,3,6,7-三羟基-9-苯基黄嘌呤-3-酮(H_3L〜2)或2,3,6,7,10,11-六羟基三亚苯基(H_6L〜3)得到配合物[{Os(bipy)_2} _2(#mu#- L〜1)] [PF_6] _2,[{Os(bipy)_2} _2(#mu#-L〜2)] [PF_6] _3和三核配合物[{Os(bipy)_2} _3(#mu #-L〜3)] [PF_6] _3缩写为[Os_2(L〜1)]〜(2 +),[Os_2(L〜2)]〜(3+)和[Os_2(L〜3)]〜 (3+)。在这些络合物中,两个或三个{Os〜(III)(bipy)_2(OO)}片段通过共轭的桥接配体连接(其中OO表示任何氧化态的二氧戊烯结合位点)。配合物表现出丰富的电化学行为,表现出以金属为中心的Os〜(III)-Os〜(II)对(作为还原)和以配体为中心的对(氧化)的组合。在所有可接近的氧化态下,对所有三种配合物进行了UV / VIS / NIR光谱电化学分析,并参照单核模型配合物[{Os〜(III)(bipy)_2(cat)] [PF_6]分配了光谱(H_2cat =邻苯二酚)也已进行了光谱电化学检查和晶体学表征。由于它们的内部氧化态分布不同,因此与前述钌类似物进行比较很有趣。单核络合物[{Os〜(III)(bipy)_2(cat)]〜+包含与儿茶酚酸盐(氧化的金属,还原的配体)配位的Os〜(III),处于相同氧化态的钌类似物为[Ru〜(II)(bipy)_2(sq)]〜+(sq = 1,2-苯并半醌单胺),即还原的金属和氧化的配体。相同的行为模式在双核和三核复合物中持续存在,并导致钌和同类物的电化学性质发生有趣的差异。

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