Suppr超能文献

新型铑中心及共轭铑羰基簇合物的合成与电化学。[四乙基铵]₃[Rh₁₅(CO)₂₇]、[四乙基铵]₃[Rh₁₅(CO)₂₅(MeCN)₂]·2MeCN及[四乙基铵]₃[Rh₁₇(CO)₃₇]的X射线结构

Synthesis and electrochemistry of new Rh-centered and conjuncto rhodium carbonyl clusters. X-ray structure of [NEt(4)](3)[Rh(15)(CO)(27)], [NEt(4)](3)[Rh(15)(CO)(25)(MeCN)(2)] x 2MeCN, and [NEt(4)](3)[Rh(17)(CO)(37)].

作者信息

Collini Davide, Biani Fabrizia Fabrizi De, Fedi Serena, Femoni Cristina, Kaswalder Francesco, Iapalucci Maria Carmela, Longoni Giuliano, Tiozzo Cristina, Zacchini Stefano, Zanello Piero

机构信息

Dipartimento di Chimica Fisica ed Inorganica, Università di Bologna, viale Risorgimento 4, 40136 Bologna, Italy.

出版信息

Inorg Chem. 2007 Sep 17;46(19):7971-81. doi: 10.1021/ic0623718. Epub 2007 Aug 17.

Abstract

A reinvestigation of the redox chemistry of [Rh7(CO)16]3- resulted in the finding of new alternative syntheses for a series of previously reported Rh-centered carbonyl clusters, i.e., [H4-nRh14(CO)25]n- (n = 3 and 4) and [Rh17(CO)30]3-, as well as new species such as a different isomer of [Rh15(CO)27]3-, the carbonyl-substituted [Rh15(CO)25(MeCN)2]3-, and the conjuncto [Rh17(CO)37]3- clusters. All of the above clusters are suggested to derive from oxidation of [Rh7(CO)16]3- with H+, arising from dissociation either of [M(H2O)n]2+ aquo complexes or nonoxidizing acids. The nature of the previously reported species has been confirmed by IR, electrospray ionization mass spectrometry, and complete X-ray diffraction studies. Only the molecular structures of the new clusters are reported in some details. The ready conversion of [Rh7(CO)16]3- in [HRh14(CO)25]3- upon oxidation has been confirmed by electrochemical techniques. In addition, electrochemical studies point out that the close-packed [H3Rh13(CO)24]2- dianion undergoes a reversible monoelectronic reduction followed by an irreversible reduction. The irreversibility of the second reduction is probably a consequence of H2 elimination from a purported [H3Rh13(CO)24]4- species. Conversely, the body-centered-cubic [HRh14(CO)25]3- and [Rh15(CO)27]3- trianions display several well-defined redox changes with features of electrochemical reversibility, even at low scan rate. The major conclusion of this work is that mild experimental conditions and a tailored oxidizing reagent may enable more selective conversion of [Rh7(CO)16]3- into a higher-nuclearity rhodium carbonyl cluster. It is also shown that isonuclear Rh clusters may display isomeric metal frameworks [i.e., [Rh15(CO)27]3-], as well as almost identical metal frames stabilized by a different number of carbonyl groups [i.e., [Rh15(CO)27]3- and [Rh15(CO)30]3-]. Other isonuclear Rh clusters stabilized by a different number of CO ligands more expectedly exhibit completely different metal geometries [i.e., [Rh17(CO)30]3- and [Rh17(CO)37]3-]. The first pair of isonuclear and isoskeletal clusters is particularly astonishing in that [Rh15(CO)30]3- features six valence electrons more than [Rh15(CO)27]3-. Finally, the electrochemical studies seem to suggest that interstitial Rh atoms are less effective than Ni and Pt interstitial atoms in promoting redox properties and inducing molecular capacitor behavior in carbonyl clusters.

摘要

对[Rh₇(CO)₁₆]³⁻的氧化还原化学进行重新研究,发现了一系列先前报道的以铑为中心的羰基簇合物的新的合成方法,即[H₄₋ₙRh₁₄(CO)₂₅]ⁿ⁻(n = 3和4)以及[Rh₁₇(CO)₃₀]³⁻,还有新的物种,如[Rh₁₅(CO)₂₇]³⁻的不同异构体、羰基取代的[Rh₁₅(CO)₂₅(MeCN)₂]³⁻以及连接型[Rh₁₇(CO)₃₇]³⁻簇合物。上述所有簇合物都被认为是由[Rh₇(CO)₁₆]³⁻被H⁺氧化产生的,H⁺来源于[M(H₂O)ₙ]²⁺水合配合物或非氧化性酸的解离。先前报道的物种的性质已通过红外光谱、电喷雾电离质谱和完整的X射线衍射研究得到证实。本文仅详细报道了新簇合物的分子结构。通过电化学技术证实了[Rh₇(CO)₁₆]³⁻在氧化时可顺利转化为[HRh₁₄(CO)₂₅]³⁻。此外,电化学研究指出,紧密堆积的[H₃Rh₁₃(CO)₂₄]²⁻二价阴离子会经历一个可逆的单电子还原,随后是一个不可逆还原。第二次还原的不可逆性可能是由于从假定的[H₃Rh₁₃(CO)₂₄]⁴⁻物种中消除了H₂。相反,体心立方的[HRh₁₄(CO)₂₅]³⁻和[Rh₁₅(CO)₂₇]³⁻三价阴离子即使在低扫描速率下也显示出几个具有电化学可逆特征的明确的氧化还原变化。这项工作的主要结论是,温和的实验条件和定制的氧化剂可能使[Rh₇(CO)₁₆]³⁻更有选择性地转化为更高核数的铑羰基簇合物。还表明,同核铑簇合物可能显示出异构的金属骨架[即[Rh₁₅(CO)₂₇]³⁻],以及由不同数量的羰基稳定的几乎相同的金属框架[即[Rh₁₅(CO)₂₇]³⁻和[Rh₁₅(CO)₃₀]³⁻]。其他由不同数量的CO配体稳定的同核铑簇合物更预期地表现出完全不同的金属几何结构[即[Rh₁₇(CO)₃₀]³⁻和[Rh₁₇(CO)₃₇]³⁻]。第一对同核和同骨架簇合物特别令人惊讶,因为[Rh₁₅(CO)₃₀]³⁻比[Rh₁₅(CO)₂₇]³⁻多六个价电子。最后,电化学研究似乎表明,间隙铑原子在促进氧化还原性质和诱导羰基簇合物中的分子电容器行为方面不如镍和铂间隙原子有效。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验