Synergistic enhancement mechanism of nano-TiO 2 on the mechanical properties and photocatalytic performance of geopolymers

Nano-TiO 2 was used as a photocatalytic material in combination with FA-GGBS-based geopolymer materials to study the mechanism by which the photocatalytic and mechanical performance of geopolymers containing nano-TiO 2 is enhanced synergistically. Test results showed that the highest NOx degradation efficiency (58.1%) was achieved in the photocatalytic test at a nano-TiO 2 content of 3%. Mechanical performance tests showed that the performance of the test specimens significantly improved at an admixture content of 3% compared with the control group. Improvement in flexural strength was more pronounced than improvement in compressive strength, increasing by 125.43% after 28 day. The photocatalytic polymer exhibited the most effective pore filling at a nano-TiO 2 content of 3%. Nano-TiO 2 promotes the formation of N-A-S-H gel but inhibits that of C-A-S-H gel. In the later stages of curing, the ratio of N-A-S-H to C-A-S-H gels in photocatalytic geopolymers changes accordingly. Existing studies on the effect of nano-TiO 2 on the mechanical properties of geopolymers reveal that nano-TiO 2 improves the mechanical performance of geopolymers via pore filling effect and serving as nucleation sites to accelerate hydration reactions.

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Publication Details

Journal
Journal of Composite Materials
Published
2026-09-16
DOI
https://doi.org/10.1177/00219983261489675
Primary Topic
Concrete and Cement Materials Research
Type
article
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article

Synergistic enhancement mechanism of nano-TiO 2 on the mechanical properties and photocatalytic performance of geopolymers

Ji Ping Hao, Chune Sui, Peng-Cheng Su, Wen-Jun Yang et al.
Journal of Composite Materials
Concrete and Cement Materials Research
article

Synergistic enhancement mechanism of nano-TiO 2 on the mechanical properties and photocatalytic performance of geopolymers

Ji Ping Hao, Chune Sui, Peng-Cheng Su, Wen-Jun Yang, Zhi-Xin Chen
article en

Abstract

Nano-TiO 2 was used as a photocatalytic material in combination with FA-GGBS-based geopolymer materials to study the mechanism by which the photocatalytic and mechanical performance of geopolymers containing nano-TiO 2 is enhanced synergistically. Test results showed that the highest NOx degradation efficiency (58.1%) was achieved in the photocatalytic test at a nano-TiO 2 content of 3%. Mechanical performance tests showed that the performance of the test specimens significantly improved at an admixture content of 3% compared with the control group. Improvement in flexural strength was more pronounced than improvement in compressive strength, increasing by 125.43% after 28 day. The photocatalytic polymer exhibited the most effective pore filling at a nano-TiO 2 content of 3%. Nano-TiO 2 promotes the formation of N-A-S-H gel but inhibits that of C-A-S-H gel. In the later stages of curing, the ratio of N-A-S-H to C-A-S-H gels in photocatalytic geopolymers changes accordingly. Existing studies on the effect of nano-TiO 2 on the mechanical properties of geopolymers reveal that nano-TiO 2 improves the mechanical performance of geopolymers via pore filling effect and serving as nucleation sites to accelerate hydration reactions.

Journal of Composite Materials
Inner Mongolia University (CN), Inner Mongolia Electric Power (China) (CN), Nanjing Zhongyi Architectural Design Institute (China) (CN)
Openalex Percentile: Top 16%
Concrete and Cement Materials Research
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Synergistic enhancement mechanism of nano-TiO 2 on the mechanical properties and photocatalytic performance of geopolymers — Ji Ping Hao, Chune Sui, et al. · Journal of Composite Materials (2026) | TGRS Research Map | TGRS