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首页> 外文期刊>Chemistry: A European journal >Unprecedented polymerization of epsilon-caprolactone initiated by a single-site lanthanide borohydride complex, [SM(eta-C5Me5)(2)(BH4)(thf)]: Mechanistic insights
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Unprecedented polymerization of epsilon-caprolactone initiated by a single-site lanthanide borohydride complex, [SM(eta-C5Me5)(2)(BH4)(thf)]: Mechanistic insights

机译:单中心镧系元素硼氢化物[SM(eta-C5Me5)(2)(BH4)(thf)]引发的ε-己内酯空前聚合

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The monoborohydride lanthanide complex [SM(CP*)(2)(BH4)(thf)] (1a) (Cp* = eta-C5Me5), has been successfully used for the controlled ringopening polymerization of epsilon-caprolactone (epsilon-CL). The organometallic samarium(III) initiator la produces, in quantitative yields, alpha,omega-dihydroxytelechelic poly(epsilon-caprolactone) displaying relatively narrow polydispersity indices (<1.3) within a short period of time (30min). The polymers have been characterized by H-1 and C-13 NMR, SEC, and MALDI-TOF MS analyses. Use of the single-site initiator 1a allows a better understanding of the polymerization mechanism, in particular with the identification of the intermediate compound [SM(CP*)(2)(BH4)(epsilon-CL)] (1b). Indeed, one molecule of F-CL initially displaces the coordinated THF in 1a to give 1b. Then, epsilon-CL opening (through cleavage of the cyclic ester oxygen-acyl bond) and insertion into the Sm-HBH3 bond followed by reduction of the carbonyl function by the BH3 end-group ligand, leads to the samarium alkoxyborane derivative [Sm(Cp*)(2){O(CH2)(6)O(BH2)}] (2). This compound subsequently initiates the polymerization of epsilon-CL through a coordination-insertion mechanism. Finally, upon hydrolysis, alpha,omega-dihydroxypoly(epsilon-caprolactone), HO(CH2)(5)C(O){O(CH2)(5)C(O)}(n)O(CH2)(6)OH (4) is recovered. The stereoelectronic contribution of the two Cp* ligands appears to slow down the polymerization and to limit transesterification reactions.
机译:单硼氢化镧系元素络合物[SM(CP *)(2)(BH4)(thf)](1a)(Cp * = eta-C5Me5)已成功用于ε-己内酯(epsilon-CL)的受控开环聚合。有机金属mar(III)引发剂1a以定量收率产生在短时间段(30分钟)内显示相对窄的多分散指数(<1.3)的α,ω-二羟基telechelic聚(ε-己内酯)。通过H-1和C-13 NMR,SEC和MALDI-TOF MS分析对聚合物进行了表征。使用单中心引发剂1a可以更好地理解聚合机理,特别是在鉴定中间化合物[SM(CP *)(2)(BH4)(ε-CL)](1b)时。实际上,一分子F-CL最初会取代1a中的配位THF生成1b。然后,ε-CL开环(通过环酯氧-酰基键的裂解)和插入Sm-HBH3键,然后由BH3端基配体还原羰基官能团,生成to烷氧基硼烷衍生物[Sm( Cp *)(2){O(CH2)(6)O(BH2)}](2)。该化合物随后通过配位插入机制引发ε-CL的聚合。最后,水解后,α,ω-二羟基聚(ε-己内酯),HO(CH2)(5)C(O){O(CH2)(5)C(O)}(n)O(CH2)(6)回收了OH(4)。两个Cp *配体的立体电子作用似乎减慢了聚合反应并限制了酯交换反应。

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