Abstract
Peiyuan Zhou, Hui He, Yani Lu, Cai Wu, Daopei Zhu
Abstract
Authors
Institutions
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Alkali-activated materials and geopolymer: a review of common precursors and activators addressing circular economy
10.1007/s43615-021-00029-w · 2022
Geopolymers as an alternative to Portland cement: An overview
10.1016/j.conbuildmat.2019.117455 · 2020
Recycling of aluminosilicate-based solid wastes through alkali-activation: preparation, characterization, and challenges
10.3390/buildings14010226 · 2024
Review of the materials composition and performance evolution of green alkali-activated cementitious materials
10.1007/s10098-023-02478-3 · 2023
Reaction mechanisms of alkali-activated materials
2021
Relating chemical composition, structure, and rheology in alkali-activated aluminosilicate gels
10.1111/jace.17459 · 2021
Rheokinetic modeling of NAS–H gel formation related to alkali-activated aluminosilicate materials
10.1007/s00397-022-01351-2 · 2022
The formation, characteristics, and resource utilization of lithium slag
10.1016/j.conbuildmat.2024.136648 · 2024
A review on cementitious and geopolymer composites with lithium slag incorporation
10.3390/ma17010142 · 2023
Provenance
crossref
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openalex
Confidence 95%
datacite
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Microstructural investigation of thermo-mechanically processed lithium slag for geopolymer precursor using various characterization techniques
10.1016/j.conbuildmat.2022.127952 · 2022
Preparation of geopolymers from thermally activated lithium slag: Activity enhancement and microstructure
2024
Preparation of geopolymers from thermally activated lithium slag as sole precursor: Mechanical properties and microstructure
2024
Low-carbon cementitious materials from industrial wastes: synergistic sulfate-alkali activation of granulated blast furnace slag and lithium slag
10.1007/s42768-025-00267-w · 2026
Alkali-activated materials based on lithium slag and ground blast furnace slag: Mechanical properties and microstructure
10.1016/j.conbuildmat.2026.145319 · 2026
Preparation and characterization of lithium slag-based alkali-activated gelling materials
2026
The influence of graphene derivatives on the mechanical and durability properties of conventional and geopolymer concrete
10.1080/19475411.2026.2647934 · 2026
A review of the impact of graphene oxide on cement composites
10.3390/nano15030216 · 2025
Reinforcing mechanisms review of the graphene oxide on cement composites
10.1515/ntrev-2024-0120 · 2024
The evolution of oxygen-functional groups of graphene oxide as a function of oxidation degree
10.1016/j.matchemphys.2021.125629 · 2022
Functional groups in graphene oxide
10.1039/d2cp04082d · 2022
Enhancing cementitious composites with functionalized graphene oxide-based materials: surface chemistry and mechanisms
10.3390/ijms241310461 · 2023
Influence of nanosheet size and oxygen-containing functional group content on the reinforcing efficiency of graphene oxide on cementitious composites
10.1007/s10853-025-10888-5 · 2025
Investigation of dispersion behavior of GO in aqueous and effect of ultra-low dosage GO on structure and properties of cement-based composites[J]
10.1016/j.conbuildmat.2022.128828 · 2022
Enhancing mechanical strength and microstructural properties of alkali-activated systems through nano graphene oxide dispersion and polycarboxylate ether admixture[J]
10.1016/j.conbuildmat.2024.139004 · 2024
Mechanical properties and mechanisms of alkali-activated slag paste reinforced by graphene oxide-SiO2 composite
10.1016/j.jclepro.2022.134502 · 2022
Nano-mechanism of graphene oxide reinforced fly ash-slag based geopolymer materials to form high polymerization degree C-(A)-SH: A new view of physical-chemical synergistic effect
10.1016/j.cemconcomp.2025.105937 · 2025
Optimizing raw material composition and alkali content in low silicon-aluminum tailings-based geopolymers
10.1016/j.conbuildmat.2023.133339 · 2023
Effects of alkaline activators on pore structure and mechanical properties of ultrafine metakaolin geopolymers cured at room temperature
10.1016/j.conbuildmat.2022.129678 · 2022
Study on the characteristics of crystal formation and transformation of alkali-activated slag minerals induced by weak alkali
10.3390/cryst14121086 · 2024
Study of the mechanical properties and microstructure of alkali-activated fly ash–slag composite cementitious materials
10.3390/polym15081903 · 2023
Influence of fly ash content on pore structure regulation in alkali-activated slag under alkaline conditions
10.1016/j.conbuildmat.2025.141863 · 2025
Compositions and microstructures of carbonated geopolymers with different precursors
10.3390/ma17071491 · 2024
Research on mix design and mechanical performances of MK-GGBFS based geopolymer pastes using central composite design method
10.1038/s41598-024-59872-0 · 2024
Investigating geopolymer mortar incorporating industrial waste using response surface methodology: A sustainable approach for construction materials
2024
Optimization using central composite design of the response surface methodology for the compressive strength of alkali-activated material from rice husk ash
10.3390/constrmater5010005 · 2025
GB/T 2419
2005
GB/T 1346
2011
Unresolved referenced work
2021
Effect of modified multi-walled carbon nanotubes on mechanical properties and microscopic mechanism of lithium slag geopolymers
2024
Alkali-fused lithium slag as a substitute for slag in one-part geopolymers: Mechanism of reactivity enhancement and microstructure
10.1016/j.conbuildmat.2024.137696 · 2024
Study on properties and hydration mechanism of green alkali-activation lithium slag composite cementitious materials
10.1016/j.conbuildmat.2025.140966 · doi-reference
Microstructural investigation of lithium slag geopolymer pastes containing silica fume and fly ash as additive chemical modifiers
10.1016/j.cemconcomp.2022.104736 · doi-reference
Lithium slag-based geopolymer synthesized with hybrid solid activators
10.1016/j.conbuildmat.2022.130070 · doi-reference
Alkali-fused lithium slag as a substitute for slag in one-part geopolymers: Mechanism of reactivity enhancement and microstructure
10.1016/j.conbuildmat.2024.137696 · doi-reference
Optimization using central composite design of the response surface methodology for the compressive strength of alkali-activated material from rice husk ash
10.3390/constrmater5010005 · doi-reference
Research on mix design and mechanical performances of MK-GGBFS based geopolymer pastes using central composite design method
10.1038/s41598-024-59872-0 · doi-reference
Compositions and microstructures of carbonated geopolymers with different precursors
10.3390/ma17071491 · doi-reference
Influence of fly ash content on pore structure regulation in alkali-activated slag under alkaline conditions
10.1016/j.conbuildmat.2025.141863 · doi-reference
Study of the mechanical properties and microstructure of alkali-activated fly ash–slag composite cementitious materials
10.3390/polym15081903 · doi-reference
Study on the characteristics of crystal formation and transformation of alkali-activated slag minerals induced by weak alkali
10.3390/cryst14121086 · doi-reference
Effects of alkaline activators on pore structure and mechanical properties of ultrafine metakaolin geopolymers cured at room temperature
10.1016/j.conbuildmat.2022.129678 · doi-reference
Optimizing raw material composition and alkali content in low silicon-aluminum tailings-based geopolymers
10.1016/j.conbuildmat.2023.133339 · doi-reference
Nano-mechanism of graphene oxide reinforced fly ash-slag based geopolymer materials to form high polymerization degree C-(A)-SH: A new view of physical-chemical synergistic effect
10.1016/j.cemconcomp.2025.105937 · doi-reference
Mechanical properties and mechanisms of alkali-activated slag paste reinforced by graphene oxide-SiO2 composite
10.1016/j.jclepro.2022.134502 · doi-reference
Enhancing mechanical strength and microstructural properties of alkali-activated systems through nano graphene oxide dispersion and polycarboxylate ether admixture[J]
10.1016/j.conbuildmat.2024.139004 · doi-reference
Investigation of dispersion behavior of GO in aqueous and effect of ultra-low dosage GO on structure and properties of cement-based composites[J]
10.1016/j.conbuildmat.2022.128828 · doi-reference
Influence of nanosheet size and oxygen-containing functional group content on the reinforcing efficiency of graphene oxide on cementitious composites
10.1007/s10853-025-10888-5 · doi-reference
Enhancing cementitious composites with functionalized graphene oxide-based materials: surface chemistry and mechanisms
10.3390/ijms241310461 · doi-reference
Functional groups in graphene oxide
10.1039/d2cp04082d · doi-reference
The evolution of oxygen-functional groups of graphene oxide as a function of oxidation degree
10.1016/j.matchemphys.2021.125629 · doi-reference
Reinforcing mechanisms review of the graphene oxide on cement composites
10.1515/ntrev-2024-0120 · doi-reference
A review of the impact of graphene oxide on cement composites
10.3390/nano15030216 · doi-reference
The influence of graphene derivatives on the mechanical and durability properties of conventional and geopolymer concrete
10.1080/19475411.2026.2647934 · doi-reference
Alkali-activated materials based on lithium slag and ground blast furnace slag: Mechanical properties and microstructure
10.1016/j.conbuildmat.2026.145319 · doi-reference
Low-carbon cementitious materials from industrial wastes: synergistic sulfate-alkali activation of granulated blast furnace slag and lithium slag
10.1007/s42768-025-00267-w · doi-reference
Microstructural investigation of thermo-mechanically processed lithium slag for geopolymer precursor using various characterization techniques
10.1016/j.conbuildmat.2022.127952 · doi-reference
A review on cementitious and geopolymer composites with lithium slag incorporation
10.3390/ma17010142 · doi-reference
The formation, characteristics, and resource utilization of lithium slag
10.1016/j.conbuildmat.2024.136648 · doi-reference
Rheokinetic modeling of NAS–H gel formation related to alkali-activated aluminosilicate materials
10.1007/s00397-022-01351-2 · doi-reference
Relating chemical composition, structure, and rheology in alkali-activated aluminosilicate gels
10.1111/jace.17459 · doi-reference
Review of the materials composition and performance evolution of green alkali-activated cementitious materials
10.1007/s10098-023-02478-3 · doi-reference
Recycling of aluminosilicate-based solid wastes through alkali-activation: preparation, characterization, and challenges
10.3390/buildings14010226 · doi-reference
Geopolymers as an alternative to Portland cement: An overview
10.1016/j.conbuildmat.2019.117455 · doi-reference
Alkali-activated materials and geopolymer: a review of common precursors and activators addressing circular economy
10.1007/s43615-021-00029-w · doi-reference