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Fanxing Bu

Biographic Data

ID3794946
NAMEFanxing Bu
GIVEN NAMESFanxing
FAMILY NAMEBu
SIGNATUREBU F
AFFILIATIONSShanghai University
ORCID0000-0003-3177-5928
VERIFIEDYes
TOTAL WORKS5
TOTAL CITATIONS0
AUTHOR COUNT5
EDITOR COUNT0
FIRST PUBLICATION YEAR2024
LATEST PUBLICATION YEAR2026
H-INDEX0
  • Phenyl grafted flexible-rigid hybrid organosilicon network with enhanced aging- and crack-resistance for sandstone cultural heritage conservation

    Open Access•Yangchao Cheng, Zheng Li et al.•ARTICLE•Journal of Cultural Heritage•2026

    Functionalization of conventional tetraalkoxysilane-derived organosilicon sols has been widely adopted to mitigate cracking issues in sandstone cultural heritage conservation. However, the introduction of inappropriate organic segments critically compromises aging resistance and practical utility. In this study, a phenyl-functionalized organosilicon sol (Ph-sol) is designed via copolymerization reaction between methylphenyldimethoxysilane and tet…

  • Siloxane‐Schiff Base Dual‐Crosslinking Enable Damage‐Free Consolidation of Fragile Waterlogged Ivory From the Sanxingdui Site

    Open Access•Wei Yang, Zheng Li et al.•ARTICLE•Archaeometry•2026

    The conservation of decayed waterlogged ivory from the Sanxingdui site faces a dual challenge: structural collapse upon dehydration caused by capillary forces and microcracking during consolidation due to internal stress from conventional consolidants. Here, we report a novel dual‐crosslinking consolidant (APG) based on (3‐aminopropyl)trimethoxysilane (APTMS) and glyoxal for damage‐free consolidation of decayed waterlogged ivory. The APG employs …

  • Simultaneous Deacidification and Reinforcement of Aged Paper via In Situ Polymerization of Inorganic Ionic Oligomers

    Open Access•Zheng Li, Wei Yang et al.•ARTICLE•Archaeometry•2025

    The acidification and degradation of paper, a primary carrier of human civilization, pose a significant challenge to cultural heritage conservation. Here, we introduce for the first time a biomimetic conservation strategy based on volatile organic base modified inorganic ionic oligomers, which act as a dual‐function agent for simultaneous deacidification and reinforcement. Triethylamine (TEA)‐capped calcium phosphate oligomers (CPOs), stabilized …

  • Hybrid siloxane oligomer

    Open Access•Zheng Li, R Wang et al.•ARTICLE•Journal of Cultural Heritage•2024•References: 1

  • Flexible-rigid hybrid siloxane network for stone heritage conservation

    Open Access•Zheng Li, Chen Jia et al.•ARTICLE•Journal of Cultural Heritage•2024

No prominent works on this page.

  • Hybrid siloxane oligomer

    Open Access•Zheng Li, R Wang et al.•ARTICLE•Journal of Cultural Heritage•2024•References: 1

  • Flexible-rigid hybrid siloxane network for stone heritage conservation

    Open Access•Zheng Li, Chen Jia et al.•ARTICLE•Journal of Cultural Heritage•2024

  • Simultaneous Deacidification and Reinforcement of Aged Paper via In Situ Polymerization of Inorganic Ionic Oligomers

    Open Access•Zheng Li, Wei Yang et al.•ARTICLE•Archaeometry•2025

    The acidification and degradation of paper, a primary carrier of human civilization, pose a significant challenge to cultural heritage conservation. Here, we introduce for the first time a biomimetic conservation strategy based on volatile organic base modified inorganic ionic oligomers, which act as a dual‐function agent for simultaneous deacidification and reinforcement. Triethylamine (TEA)‐capped calcium phosphate oligomers (CPOs), stabilized …

  • Phenyl grafted flexible-rigid hybrid organosilicon network with enhanced aging- and crack-resistance for sandstone cultural heritage conservation

    Open Access•Yangchao Cheng, Zheng Li et al.•ARTICLE•Journal of Cultural Heritage•2026

    Functionalization of conventional tetraalkoxysilane-derived organosilicon sols has been widely adopted to mitigate cracking issues in sandstone cultural heritage conservation. However, the introduction of inappropriate organic segments critically compromises aging resistance and practical utility. In this study, a phenyl-functionalized organosilicon sol (Ph-sol) is designed via copolymerization reaction between methylphenyldimethoxysilane and tet…

  • Siloxane‐Schiff Base Dual‐Crosslinking Enable Damage‐Free Consolidation of Fragile Waterlogged Ivory From the Sanxingdui Site

    Open Access•Wei Yang, Zheng Li et al.•ARTICLE•Archaeometry•2026

    The conservation of decayed waterlogged ivory from the Sanxingdui site faces a dual challenge: structural collapse upon dehydration caused by capillary forces and microcracking during consolidation due to internal stress from conventional consolidants. Here, we report a novel dual‐crosslinking consolidant (APG) based on (3‐aminopropyl)trimethoxysilane (APTMS) and glyoxal for damage‐free consolidation of decayed waterlogged ivory. The APG employs …

Building materials and conservation (4 works) · Cultural Heritage Materials Analysis (3 works) · Composite material (2 works) · Engineering (2 works) · Materials Science (2 works) · Siloxane (2 works) · 3D Surveying and Cultural Heritage (1 works) · acid degradation (1 works) · Advanced Cellulose Research Studies (1 works) · aging resistance (1 works)

Ethnos_APP • Open Source Project • MIT License • Frontend v2.0.0 • Privacy and Cookies • API Documentation: api.ethnos.app/docs • API Source Code: GitHub • DOI: 10.5281/zenodo.17049435 • Frontend Source Code: GitHub • DOI: 10.5281/zenodo.17050053 • cruz.rio.br • Expectantes Misericordiae