Westfälische Wilhelms-Universität Münster, Organisch-Chemisches Institut, Corrensstrasse 40, 48149 Münster, Germany.
Acc Chem Res. 2015 Mar 17;48(3):619-27. doi: 10.1021/ar500434f. Epub 2015 Feb 20.
Synthetic organic chemistry underpins many scientific disciplines. The development of new synthetic methods proceeds with the ultimate intention of providing access to novel structural motifs or providing safer, increasingly efficient, or more economical chemical reactions. To facilitate the identification and application of new methods in solving real synthetic problems, this Account will highlight the benefits of providing a fuller picture of both the scope and limitations of new reactions, with a primary focus on the evaluation of functional group tolerance and stability of a reaction using intermolecular screens. This Account will begin with a discussion on reaction evaluation, specifically considering the suitability of a given reaction for application in target-oriented synthesis. A comparison of desirable and essential criteria when choosing a reaction is given, and a short discussion on the value of negative and qualitative data is provided. The concept of intermolecular reaction screening will be introduced, and a direct comparison with a traditional substrate scope highlights the benefits and limitations of each and thus the complementary nature of these approaches. In recent years, a number of ad hoc applications of intermolecular screens to evaluate the functional group tolerance of a reaction or the stability of functional groups to a given set of reaction conditions have been reported, and will be discussed. More recently, we have developed a formal high-throughput intermolecular screening protocol that can be utilized to rapidly evaluate new chemical reactions. This simple and rapid protocol enables a much broader evaluation of a reaction in terms of functional group tolerance and the stability of chemical motifs to the reaction conditions than is feasible with a typical reaction scope. The development, evaluation, and application of this method within our group will be discussed in detail, with both the potential benefits and limitations highlighted and discussed. In addition, we will discuss more recent applications of intermolecular screens from both industrial and academic groups. Modifications in protocols and applications will be highlighted, including problem based evaluations, assessment of biomolecule compatibility, establishment of relative rate data, and the identification of new reactivity. Such screens have been applied in diverse chemistries including C-H functionalization reactions, frustrated Lewis-pair-catalyzed hydrogenations, heterogeneous catalysis, photoredox catalysis, enantioselective organocatalysis, and polymer science. We feel that the application of intermolecular screens to such a diversity of reactions highlights the practical simplicity of such screens. A summary of the applications and potential utility of intermolecular reaction evaluation is provided.
合成有机化学是许多科学学科的基础。新合成方法的发展最终旨在提供新颖结构基序的获取途径,或者提供更安全、更高效或更经济的化学反应。为了促进新方法在解决实际合成问题中的识别和应用,本综述将重点介绍提供新反应的范围和限制的更全面的图景的好处,主要侧重于使用分子间筛选评估官能团耐受性和反应稳定性。本综述将从讨论反应评估开始,特别是考虑给定反应在目标导向合成中的适用性。给出了选择反应时合适和必要标准的比较,并简要讨论了负面和定性数据的价值。将介绍分子间反应筛选的概念,并将其与传统的底物范围进行直接比较,突出了每种方法的优缺点,从而突出了这些方法的互补性。近年来,已经报道了一些分子间筛选的专门应用,用于评估反应的官能团耐受性或给定反应条件下官能团的稳定性,将对其进行讨论。最近,我们开发了一种正式的高通量分子间筛选方案,可以用于快速评估新化学反应。与典型的反应范围相比,这种简单快速的方案能够更广泛地评估反应的官能团耐受性和化学基序对反应条件的稳定性。将详细讨论我们小组中该方法的开发、评估和应用,突出并讨论其潜在的优缺点。此外,我们将讨论来自工业界和学术界的分子间筛选的最新应用。将突出显示协议和应用程序的修改,包括基于问题的评估、生物分子相容性评估、相对速率数据的建立以及新反应性的鉴定。这种筛选已应用于包括 C-H 功能化反应、受阻路易斯对催化氢化、多相催化、光还原催化、对映选择性有机催化和聚合物科学在内的各种化学中。我们认为,将分子间筛选应用于如此多样化的反应突出了这些筛选的实际简单性。提供了分子间反应评估的应用和潜在用途的总结。