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May 20, 2026Smart Molecules0 citationsOpen Access

Smart cellulose‐based room temperature phosphorescent materials: From mechanisms to construction strategies and applications

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SWShasha WuYZYifan ZhouWWWanjin Wu

Key Points

  • This review aims to summarize recent advancements in room temperature phosphorescent systems utilizing cellulose derivatives.
  • Elucidation of mechanisms behind cluster-triggered emission.
  • Discussion of construction strategies: aggregation structure regulation, clustered emission center reconstruction, hydroxyl functionalization, host-guest doping.
  • Highlighting innovative applications in information security and environmental monitoring.
  • Numerous cellulose-based RTP materials exhibit excellent performance characteristics.
  • Emergence of innovative application areas demonstrates versatility in real-world usage.
  • Insights into current challenges and future design strategies are provided.

Abstract

Abstract Room temperature phosphorescent (RTP) molecules, owing to their unique afterglow characteristics, can translate microscopic electronic transitions into macroscopic smart responses, and have gradually emerged as a research hotspot in the field of smart molecules. Benefiting from the renewability, biocompatibility, and structural tunability of cellulose, these materials provide an ideal and sustainable platform for constructing RTP systems. Significant progress has been made in this field, leading to the emergence of numerous cellulose‐based RTP material systems with novel structures and excellent performance. This review summarizes recent advances in RTP systems cellulose derivatives. First, it elucidates the underlying mechanisms of cluster‐triggered emission, followed by a detailed discussion of four key construction strategies: regulation of aggregation structures, reconstruction of clustered emission centers, hydroxyl functionalization, and host‐guest doping. In addition, innovative applications in information security and environmental monitoring are highlighted. Finally, current challenges are discussed, and perspectives on the rational design of future biomass‐based RTP materials are provided.

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Cite This Study

Wu et al. (2026) studied this question.

synapsesocial.com/papers/6a0d50dcf03e14405aa9cf88https://doi.org/10.1002/smo2.70059
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