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February 5, 2026Advanced Materials Technologies5 citations

Triply Periodic Minimal Surface (TPMS) Structures in 3D‐Printed Catalyst Supports: Advanced Optimization of Heat Transfer, Mass Transport, and Mechanical Stability for Catalysis

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SBShen‐wei BaiYHYong‐jie HaoYYYue‐kai Yan

Key Points

  • The central aim is to explore how triply periodic minimal surface structures can enhance catalyst support performance.
  • Review of mathematical foundations of TPMS structures
  • Analysis of advanced additive manufacturing techniques
  • Application of multi-physics modeling in catalysis
  • Assessment of various catalytic applications
  • TPMS structures significantly improve heat transfer and mass transport in catalytic reactions.
  • Enhanced mechanical stability of 3D-printed supports is achieved through optimized geometries.
  • Innovations address issues like thermal hotspots and inefficient reactant distribution.
  • Strategies for sustainable manufacturing and material science advancements are highlighted.

Abstract

ABSTRACT Triply periodic minimal surface (TPMS) structures have emerged as a transformative platform for 3D‐printed catalyst supports, offering precise control over porous architectures to optimize heat transfer, mass transport, and mechanical stability in heterogeneous catalysis. This exhaustive review delves into the mathematical foundations of TPMS, advanced additive manufacturing (AM) techniques, multi‐physics modeling, and diverse catalytic applications. By integrating cutting‐edge research from 2018 to 2025, the review addresses critical challenges in conventional systems, such as thermal hotspots and inefficient reactant distribution, while highlighting TPMS‐driven innovations in energy conversion and environmental remediation. Special emphasis is placed on material science advancements and sustainable manufacturing strategies, providing a roadmap for next‐generation catalytic systems.

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Cite This Study

Bai et al. (2026) studied this question.

synapsesocial.com/papers/698435e5f1d9ada3c1fb52c1https://doi.org/10.1002/admt.202502352
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