Martínez-Martínez Antonio J, Royle Cameron G, Furfari Samantha K, Suriye Kongkiat, Weller Andrew S
Department of Chemistry, Chemistry Research Laboratories, University of Oxford, Oxford OX1 3TA, United Kingdom.
Department of Chemistry, University of York, Heslington, York, YO10 5DD, United Kingsdom.
ACS Catal. 2020 Feb 7;10(3):1984-1992. doi: 10.1021/acscatal.9b03727. Epub 2020 Jan 6.
The use of solid-state molecular organometallic chemistry (SMOM-chem) to promote the efficient double bond isomerization of 1-butene to 2-butenes under flow-reactor conditions is reported. Single crystalline catalysts based upon the σ-alkane complexes [Rh(RPCHCHPR)(ηη-NBA)][BAr ] (R = Cy, Bu; NBA = norbornane; Ar = 3,5-(CF)CH) are prepared by hydrogenation of a norbornadiene precursor. For the Bu-substituted system this results in the loss of long-range order, which can be re-established by addition of 1-butene to the material to form a mixture of [Rh(BuPCHCHPBu)(-2-butene)][BAr ] and [Rh(BuPCHCHPBu)(1-butene)][BAr ], in an order/disorder/order phase change. Deployment under flow-reactor conditions results in very different on-stream stabilities. With R = Cy rapid deactivation (3 h) to the butadiene complex occurs, [Rh(CyPCHCHPCy)(butadiene)][BAr ], which can be reactivated by simple addition of H. While the equivalent butadiene complex does not form with R = Bu at 298 K and on-stream conversion is retained up to 90 h, deactivation is suggested to occur via loss of crystallinity of the SMOM catalyst. Both systems operate under the industrially relevant conditions of an isobutene co-feed. cis:trans selectivites for 2-butene are biased in favor of cis for the Bu system and are more leveled for Cy.
报道了在流动反应器条件下使用固态分子有机金属化学(SMOM化学)促进1-丁烯高效双键异构化为2-丁烯。基于σ-烷烃配合物[Rh(RPCHCHPR)(ηη-NBA)][BAr ](R = Cy、Bu;NBA = 降冰片烷;Ar = 3,5-(CF)CH)的单晶催化剂通过降冰片二烯前体的氢化制备。对于Bu取代的体系,这导致长程有序性的丧失,通过向材料中加入1-丁烯形成[Rh(BuPCHCHPBu)(-2-丁烯)][BAr ]和[Rh(BuPCHCHPBu)(1-丁烯)][BAr ]的混合物,可在有序/无序/有序相变中重新建立长程有序性。在流动反应器条件下使用会导致非常不同的在线稳定性。当R = Cy时,会迅速失活(3小时)生成丁二烯配合物[Rh(CyPCHCHPCy)(丁二烯)][BAr ],通过简单加入H可使其重新活化。虽然在298 K时R = Bu不会形成等效的丁二烯配合物,且在线转化率可保持高达90小时,但据推测失活是通过SMOM催化剂结晶度的丧失发生的。两个体系都在异丁烯共进料的工业相关条件下运行。2-丁烯的顺式:反式选择性对于Bu体系偏向于顺式,而对于Cy体系则更为平均。