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通过醇对 6-和 5-卤代环硼烷的亲核进攻合成 5-和 6-取代的十硼醚及其令人惊讶的区域选择性。

Syntheses and surprising regioselectivity of 5- and 6-substituted decaboranyl ethers via the nucleophilic attack of alcohols on 6- and 5-halodecaboranes.

机构信息

Department of Chemistry, University of Pennsylvania Philadelphia, Pennsylvania 19104-6323, USA.

出版信息

Inorg Chem. 2011 May 2;50(9):4054-64. doi: 10.1021/ic102544v. Epub 2011 Mar 31.

Abstract

The selective syntheses of new classes of decaboranyl ethers containing a range of functional groups substituted at the B5 or B6 positions were achieved through the reaction of alcohols with halodecaboranes. The surprising regioselectivity of the reaction, where the reaction of the 6-halodecaboranes (6-X-B(10)H(13)) with alcohols yielded the 5-substituted decaboranyl ethers (5-RO-B(10)H(13)) and the reaction with 5-halodecaboranes (5-X-B(10)H(13)) gave the 6-substituted decaboranyl ethers (6-RO-B(10)H(13)), was confirmed by NMR and X-ray crystallographic analyses. The crystallographic determinations also showed that the decaboranyl ethers had shortened B-O bonds and apparent sp(2) hybridization at oxygen indicating significant π-backbonding from oxygen to the cage boron. A possible substitution mechanism was computationally identified involving: (1) initial nucleophilic attack by the alcohol-oxygen at a site adjacent to the 5- or 6-halo-substituted boron, (2) movement of the terminal hydrogen at the point of attack to a bridging position, (3) formation of a 5-membered (B-O-H-Cl-B) cyclic transition state allowing the acidic methanolic-hydrogen to bond to the halogen, (4) release of HX, and finally (5) movement of a bridging hydrogen into the vacated terminal position. Deuterium labeling studies confirmed the movement of hydrogen from a bridging position of the halodecaborane into the halogen-vacated terminal position on the decaboranyl ether product. The relative reaction rates of the 6-X-B(10)H(13) compounds (X = F, Cl, Br, I) with alcohols were likewise found to be consistent with this mechanism.

摘要

通过醇与卤代十硼烷的反应,实现了一系列在 B5 或 B6 位取代有各种功能团的新型桥连硼醚的选择性合成。该反应具有令人惊讶的区域选择性,6-卤代十硼烷(6-X-B(10)H(13))与醇反应生成 5-取代的十硼烷醚(5-RO-B(10)H(13)),而与 5-卤代十硼烷(5-X-B(10)H(13))反应则生成 6-取代的十硼烷醚(6-RO-B(10)H(13)),这一事实通过 NMR 和 X 射线晶体学分析得到了证实。晶体学测定还表明,十硼烷醚的 B-O 键缩短,氧原子的 sp(2)杂化明显,表明氧对笼状硼有显著的π键反馈。通过计算确定了一种可能的取代机制,涉及:(1)醇氧对邻近 5-或 6-卤代取代硼的亲核攻击,(2)攻击点的末端氢迁移到桥接位置,(3)形成允许酸性甲醇氢与卤键合的五元(B-O-H-Cl-B)环过渡态,(4)HX 的释放,最后(5)桥接氢迁移到空出的末端位置。氘标记研究证实了氢从卤代十硼烷的桥接位置迁移到十硼烷醚产物中卤代空位的末端位置。6-X-B(10)H(13)化合物(X = F、Cl、Br、I)与醇的相对反应速率也与该机制一致。

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