首页> 外文期刊>Journal of the American Chemical Society >When is a Nanoparticle a Cluster? An Operando EXAFS Study of Amine Borane Dehydrocoupling by Rh_(4-6) Clusters
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When is a Nanoparticle a Cluster? An Operando EXAFS Study of Amine Borane Dehydrocoupling by Rh_(4-6) Clusters

机译:纳米粒子何时是簇? Rh_(4-6)团簇对胺硼烷脱氢偶联的Operando EXAFS研究

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X-ray absorption fine structure (XAFS) is used to determine the structure of the rhodium cluster present during the catalyzed dehydrocoupling of amine boranes under operando conditions. We show how a variety of XAFS strategies can be used in combination with other analytical methods to differentiate homogeneous from heterogeneous systems. Analysis of the in situ XAFS spectra using a series of amine boranes (NH_3BH_3, R_2NHBH_3, and RNH_2BH_3 where R = methyl, isopropyl, tert-butyl, and cyclohexyl) and rhodium catalyst precursor compounds (including chloro-(1,5-cyclooctadiene)rhodium (Ⅰ) dimer, bis(1,5-cyclooctadiene)rhodium (Ⅰ) trifluoromethanesulfonate, chlorodicarbonylrhodium (Ⅰ) dimer, dichloro(penta-methylcylcopentadienyl)rhodium (Ⅲ) dimer, hexarhodium hexadecacarbonyl, and tetrarhodium dodecac-arbonyl) strongly suggest that the active catalyst species for this reaction is a homogeneous rhodium complex. Rhodium clusters containing four or six rhodium atoms (Rh_(4-6)) bound to amine boranes are observed as the major (> 99%) rhodium containing species during and after the catalyzed anaerobic dehydrocoupling. During the later stages of the reaction a nonmetallic rhodium complex precipitates in which individual Rh_(4-6) clusters likely form polymer chains ligated by the reaction products that have two or more ligating sites. The best fits of the XAFS data, using ab initio calculations of FEFF theory, show that the major rhodium species (80%) has each rhodium atom directly bound to three rhodium atoms with an observed bond distance of 2.73 A and to two boron atoms at 2.10 A. A minor (20%) rhodium species has each rhodium atom bound to four rhodium atoms with a bond distance of about 2.73 A and a single rhodium atom at a nonbonding distance of 3.88 A. No metallic rhodium was observed at any time during the anaerobic reaction.
机译:X射线吸收精细结构(XAFS)用于确定在操作条件下胺硼烷催化脱氢偶联过程中存在的铑簇的结构。我们展示了如何将各种XAFS策略与其他分析方法结合使用,以区分同类系统与异构系统。使用一系列胺硼烷(NH_3BH_3,R_2NHBH_3和RNH_2BH_3,其中R =甲基,异丙基,叔丁基和环己基)和铑催化剂前体化合物(包括氯-(1,5-环辛二烯),对原位XAFS光谱进行分析强烈建议使用铑(Ⅰ)二聚体,双(1,5-环辛二烯)铑(Ⅰ)三氟甲磺酸铑,氯二羰基铑(Ⅰ)二聚体,二氯(五甲基环戊二烯基)铑(Ⅲ)二聚体,十六碳六铑和十二碳四芳基该反应的活性催化剂是均匀的铑配合物。在催化的厌氧脱氢偶联过程中和之后,包含与胺硼烷键合的包含四个或六个铑原子(Rh_(4-6))的铑簇是主要的含铑物种(> 99%)。在反应的后期阶段,非金属铑配合物沉淀,其中单个Rh_(4-6)簇可能形成被具有两个或多个连接位点的反应产物连接的聚合物链。 XAFS数据的最佳拟合(使用FEFF理论从头算)显示,主要的铑物种(80%)使每个铑原子直接键合至三个铑原子,观察到的键距为2.73 A,并与两个硼原子键合。 2.10A。一种次要的(20%)铑物种的每个铑原子均键合到四个铑原子上,键距约为2.73 A,单个铑原子的非键合距离为3.88A。在此期间任何时间都未观察到金属铑厌氧反应。

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