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Synthesis of Metal−Hydrazone Complexes and Vapochromic Behavior of Their Hydrogen-Bonded Proton-Transfer Assemblies

机译:金属H配合物的合成及其氢键质子转移组装体的变色行为

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摘要

We synthesized and investigated a new series of metal−hydrazone complexes, including deprotonated [MX(mtbhp)] and protonated forms [MX(Hmtbhp)](ClO4) (M = Pd2+, Pt2+; X = Cl−, Br−; Hmtbhp = 2-(2-(2-(methylthio)benzylidene)hydrazinyl)pyridine) and hydrogen-bonded proton-transfer (HBPT) assemblies containing [PdBr(mtbhp)] and bromanilic acid (H2BA). The mtbhp hydrazone ligand acts as a tridentate SNN ligand and provides a high proton affinity. UV−vis spectroscopy revealed that these metal−hydrazone complexes follow a reversible protonation−deprotonation reaction ([MX(mtbhp)] + H+ [MX(Hmtbhp)]+), resulting in a remarkable color change from red to yellow. Reactions between proton acceptor [PdBr(mtbhp)] (A) and proton donor H2BA (D) afforded four types of HBPT assemblies with different D/A ratios: for D/A = 1:1, {[PdBr(Hmtbhp)](HBA)·Acetone} and {[PdBr(Hmtbhp)](HBA)·2(1,4-dioxane)}; for D/A = 1:2, [PdBr(Hmtbhp)]2(BA); and for D/A = 3:2, {[PdBr(Hmtbhp)]2(HBA)2(H2BA)·2Acetonitrile}. The proton donor gave at least one proton to the acceptor to form the hydrogen bonded A···D pair of [PdBr(Hmtbhp)]+···HBA−. The strength of the hydrogen bond in the pair depends on the kind of molecule bound to the free monoanionic bromanilate OH group. Low-temperature IR spectra (T < 150 K) showed that the hydrogen bond distance between [PdBr(Hmtbhp)]+ and bromanilate was short enough (ca. 2.58 Å) to induce proton migration in the [PdBr(Hmtbhp)]2(BA) assembly in the solid state. The hydrogen bonds formed not only between [PdBr(Hmtbhp)]+ and HBA− but also between HBA− and neutral H2BA molecules in the {[PdBr(Hmtbhp)]2(HBA)2(H2BA)·2Acetonitrile} assembly. The H2BA-based flexible hydrogen bond network and strong acidic host structure result in an interesting vapor adsorption ability and vapochromic behavior in this assembly because the vapor-induced rearrangement of the hydrogen bond network, accompanied by changes in π−π stacking interactions, provides a recognition ability of proton donating and accepting properties of the vapor molecule.
机译:我们合成并研究了一系列新的金属hydr配合物,包括去质子化的[MX(mtbhp)]和质子化的形式[MX(Hmtbhp)](ClO 4 )(M = Pd 2+ ,Pt 2 + ; X = Cl -,Br -; Hmtbhp = 2-(2-(2-(甲硫基)(亚苄基)肼基)吡啶)和含有[PdBr(mtbhp)]和溴酸(H 2 BA)的氢键质子转移(HBPT)组件。 mtbhp ligand配体充当三齿SNN配体并提供高质子亲和力。紫外可见光谱表明,这些金属hydr配合物遵循可逆的质子去质子化反应([MX(mtbhp)] + H + [MX(Hmtbhp)] + ) ,导致颜色从红色变为黄色。质子受体[PdBr(mtbhp)](A)与质子供体H 2 BA(D)之间的反应提供了四种类型的HBPT组件,具有不同的D / A比率:D / A = 1:1 ,{[PdBr(Hmtbhp)](HBA)·丙酮}和{[PdBr(Hmtbhp)](HBA)·2(1,4-二恶烷)};对于D / A = 1:2,[PdBr(Hmtbhp)] 2 (BA);并且对于D / A = 3:2,{[PdBr(Hmtbhp)] 2 (HBA) 2 (H 2 BA)·2乙腈}。质子供体将至少一个质子给予受体以形成[PdBr(Hmtbhp)] + ··HBA -的氢键A···D对。氢键对中的氢键强度取决于与游离单阴离子溴化马来酸OH基团结合的分子的类型。低温红外光谱(T <150 K)表明[PdBr(Hmtbhp)] + 与溴酸根之间的氢键距离足够短(约2.58Å),从而引起[ PdBr(Hmtbhp)] 2 (BA)组件处于固态。氢键不仅在[PdBr(Hmtbhp)] + 与HBA -之间形成,而且在HBA -与中性H 2之间形成{[PdBr(Hmtbhp)] 2 (HBA) 2 (H 2 BA)·2乙腈}组装中的 BA分子。基于H 2 BA的柔性氢键网络和强酸性主体结构在该装配体中产生了有趣的蒸汽吸附能力和气相致变色行为,因为蒸汽诱导的氢键网络重排并伴随着变化在π-π堆积相互作用中,提供了质子贡献和蒸气分子性质的识别能力。

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  • 来源
    《Journal of the American Chemical Society》 |2010年第43期|p.15286-15298|共13页
  • 作者

    Atsushi Kobayashi;

  • 作者单位

    Department of Chemistry, Faculty of Science, Hokkaido University, North-10 West-8, Kita-ku, Sapporo 060-0810, Japan, Department of Chemistry, Aichi University of Education, Igaya, Kariya, Aichi 448-8542, Japan, and Research Institute for Electronic Scienc;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-18 00:50:24

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