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February 5, 2026Applied Sciences5 citationsOpen Access

Comparative Assessment of Functionalized Geopolymers

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SMStefan MiraASAdriana-Gabriela SchiopuMOMihai Oproescu

Key Points

  • The aim is to critically assess the structure-property relationships of geopolymers and their functionalization techniques for sustainable uses.
  • Conducted a structured narrative review following PRISMA principles.
  • Literature sourced from Web of Science, Scopus, ScienceDirect, and MDPI databases focused on 2015–2025.
  • Discussed the effects of precursor type, alkaline activators, and Si-Al ratio on performance metrics.
  • Identified key functionalization approaches that enhance durability, fire resistance, photocatalytic activity, and antibacterial properties.
  • Highlighted the importance of active particles in governing functional performance within geopolymer systems.
  • Noted limitations in material variability, lack of standardization, and concerns about long-term durability.

Abstract

This review provides a comprehensive and critical analysis of geopolymers, focusing on structure–property relationships and functionalization strategies for sustainable applications. A structured narrative review methodology was adopted, following PRISMA principles, based on literature retrieved from Web of Science, Scopus, ScienceDirect, and MDPI databases, primarily covering the period 2015–2025. The influence of precursor type, alkaline activators, and Si–Al ratio on reaction kinetics, microstructure, porosity, and mechanical performance is systematically discussed. Functionalization approaches using additives are critically reviewed with respect to durability, fire resistance, photocatalytic activity, and antibacterial performance. The analysis highlights that the geopolymer matrix primarily acts as stable and versatile support, while functional performance is governed by the controlled integration of active particles. Key limitations related to the variability of raw materials, lack of standardization, and long-term durability are identified. Future research directions are outlined, emphasizing the need for standardized processing protocols and the application-oriented design of multifunctional geopolymer systems.

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Cite This Study

Mira et al. (2026) studied this question.

synapsesocial.com/papers/6984346ff1d9ada3c1fb28b7https://doi.org/10.3390/app16031513
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