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May 15, 2026Angewandte Chemie International Edition0 citations

Structure–Selectivity Relationship Study of IDPi Using Fragment and Remote Site Descriptors

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YZY K ZhouRPRoberta ProperziXWXiaozhou Wang

Key Points

  • This study aims to understand the selectivity of IDPi catalysts using fragment and remote site descriptors in chemical reactions.
  • Developed statistical models to analyze IDPi-catalyzed cyanosilylation reactions.
  • Utilized descriptors to screen chemical space for identifying selective catalysts.
  • Explored cation-π and C-H···π interactions to enhance stereo-control in reactions.
  • Identified more selective IDPi catalysts for cyanosilylation of 3-hexanone.
  • Statistical models aligned with mechanistic insights on interaction roles.
  • Introduced new universal descriptors for modeling IDPi selectivity.

Abstract

carbon atoms were defined to capture the features of the distal ring of the aryl substituents. The established statistical models of IDPi-catalyzed cyanosilylation reactions align well with the mechanistic understandings of the crucial role of C-H···π and cation-π interactions between the distal ring of IDPi and substrate in stereo-control. More selective catalysts for the challenging cyanosilylation reaction of 3-hexanone were successfully identified by using these descriptors to define and screen the chemical space of IDPi catalysts. This work not only enriches our understanding of the SSR of IDPi catalysts but also highlights the potential application of aryl fragment and remote site parameters as universal descriptors for IDPi in statistical modeling.

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Cite This Study

Zhou et al. (2026) studied this question.

synapsesocial.com/papers/6a06b940e7dec685947abdachttps://doi.org/10.1002/anie.8614821
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