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首页> 外文期刊>European journal of inorganic chemistry >Rare‐Earth Complexes with the 5,5′‐Bitetrazolate Ligand – Synthesis, Structure, Luminescence Properties, and Combustion Catalysis
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Rare‐Earth Complexes with the 5,5′‐Bitetrazolate Ligand – Synthesis, Structure, Luminescence Properties, and Combustion Catalysis

机译:稀土配合物与5,5'-比特四酸盐配体 - 合成,结构,发光性能和燃烧催化

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> A complete series of complexes of the lanthanides and yttrium (except radioactive Pm) with the 5,5′‐bitetrazolate (BT 2– ) ligand were synthesized from sodium 5,5′‐bitetrazolate and available rare‐earth (RE) salts. Eight new complexes were structurally characterized by single‐crystal XRD. The [M(BT)(H 2 O) 7 ] 2 [BT] · 6H 2 O [M = Pr ( 1 ), Gd ( 2 )] complexes are isomorphous and consist of [M(BT)(H 2 O) 7 ] + ions in which only one BT 2– ligand acts as a chelate for each metal center. The complexes [M(H 2 O) 8 ] 2 [BT] 3 · 4H 2 O [M = Y ( 3 ), Dy ( 4 ), Ho ( 5 ), Tm ( 6 ), Yb ( 7 ), Lu ( 8 )] are saltlike compounds that do not exhibit any significant metal–nitrogen contacts. Luminescence was very informative for the determination of the number of inner‐sphere coordinated water molecules in the solid samples. Despite its low luminescence intensity owing to its high hydrate composition, the deuterated europium complex exhibited an internal quantum yield of 44?%. The catalytic activities of the 5,5′‐bitetrazolate salts for the decomposition and combustion reactions of energetic materials were tested. Although no effect was found for nitramine (HMX) explosive, the impact of the salts on the thermolysis of ammonium perchlorate (AP) was established. The addition of 5?% [Dy(H
机译: >用5,5'-比特唑酸盐(Bt 2 - )配体合成镧系元素和钇(放射性PM除外)的完整系列复合物(Bt 2 - )配体钠5,5'-比特唑酯和可用的稀土(重新)盐。通过单晶XRD在结构上表征八个新复合物。 [m(bt)(h 2 o) 7 ] 2 [bt] · 6h 2 O [m = pr( 1 ),gd( 2 )]复合物是同种同质的,由[m(bt)(h 2组成 O) 7 离子,其中仅一个bt 2 - 配体用作每个金属中心的螯合物。复合物[m(h 2 o) 8 ] 2 [bt] 3 · 4h 2 o [m = y( 3 ),dy( 4 ),hO( 5 ) ,Tm( 6 ),Yb( 7 ),Lu( 8 )]是不表现出任何显着的金属 - 氮接触的盐化合物。发光非常有效地确定固体样品中的内球配位水分子的数量。尽管由于其高水合组合物,但氘化铕综合体也表现出44μm的内量子产率。测试了5,5'-比基四甲酸盐盐的催化活性,用于分解和能量材料的燃烧反应。虽然没有发现硝胺(HMX)爆炸性的效果,但是盐的影响在高氯酸铵(AP)的热解中。加入5?%[dy(h

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