Hoveyda Amir H, Zhugralin Adil R
Department of Chemistry, Merkert Chemistry Center, Boston College, Chestnut Hill, Massachusetts 02467, USA.
Nature. 2007 Nov 8;450(7167):243-51. doi: 10.1038/nature06351.
Catalytic olefin metathesis--through which pairs of C = C bonds are reorganized--transforms simple molecules to those that are complex and precious. This class of reactions has noticeably enriched chemical synthesis, which is the art of preparing scarce molecules with highly desirable properties (for example, medicinal agents or polymeric materials). Research in the past two decades has yielded structurally well-defined catalysts for olefin metathesis that are used to synthesize an array of molecules with unprecedented efficiency. Nonetheless, the full potential of olefin metathesis will be realized only when additional catalysts are discovered that are truly practical and afford exceptional selectivity for a significantly broader range of reactions.
催化烯烃复分解反应——通过该反应,碳-碳双键对得以重新组合——将简单分子转化为复杂且珍贵的分子。这类反应显著丰富了化学合成领域,化学合成是一门制备具有高度理想性质的稀有分子(例如药物制剂或聚合材料)的技艺。过去二十年的研究已产生了结构明确的烯烃复分解催化剂,这些催化剂被用于以前所未有的效率合成一系列分子。然而,只有当发现更多真正实用且能在更广泛的反应中提供卓越选择性的催化剂时,烯烃复分解反应的全部潜力才能得以实现。