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April 29, 2026ChemSusChem0 citations

The Relationship Between Catalyst and Solvent in Hydrogenation via Condensed Phase Heterogeneous Catalysis

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JFJim B. FloydRDRobert A. DagleJKJotheeswari Kothandaraman

Key Points

  • This review aims to explore the interplay between catalyst and solvent in hydrogenation reactions using condensed phase heterogeneous catalysis.
  • Investigated the role of solvents in catalytic hydrogenation within condensed phase environments.
  • Challenged the independence of catalyst and solvent in reaction design.
  • Discussed parameters such as viscosity and dielectric constant affecting reaction activity and stability.
  • Identified that solvent properties significantly influence the stability and activity of heterogeneous catalytic reactions.
  • Highlighted gaps in experimental data leading to incomplete understanding of condensed phase behaviors.
  • Drew parallels from biomass and petroleum refining to predict solvent behavior in novel condensed phase processes.

Abstract

To understand a system is to understand its components and their sum. Cascading interactions between catalyst, solvent, and reagent create a complex web of influences when heterogeneous catalysis meets the condensed phase. Due to the importance of heterogeneous catalysis in chemical manufacturing, and the present and growing potential of condensed phase chemistries, the understanding of these interactions is of paramount importance. To develop condensed phase heterogeneous catalysis, the field needs to develop understanding of the role of solvent in heterogeneous catalytic hydrogenation. While no small feat, fields such as biofuel and petroleum refining have established certain applicable generalities that can bridge the knowledge gap in emerging technologies such as integrated carbon capture and conversion to materials (IC 3 M). In this review, we thoughtfully probe the current paradigm of condensed phase catalysis by challenging the idea that catalyst and solvent are independent reaction design choices. Challenges such as lack of experimental stability studies and poor resolution on our conceptualization of the condensed phase environment are discussed. Parameters such as viscosity and the dielectric constant, and their role on reaction activity and stability are explored. Knowledge gained from established biomass and petroleum processes is discussed and used to anticipate behavior in novel processes.

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Cite This Study

Floyd et al. (2026) studied this question.

synapsesocial.com/papers/69f19f9cedf4b46824806587https://doi.org/10.1002/cssc.70614
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