Journal of Inorganic Materials, Volume. 40, Issue 4, 415(2025)

CNFs Aerogel Composite with Phosphomolybdic Acid Intercalated Hydrotalcite: Preparation and Thermal Insulation Performance

Liping YUAN1, Yuanbo WU1, Jiajing YU1, Shiyan ZHANG1, Yi SUN1, Yunchu HU1, and Youhua FAN2、*
Author Affiliations
  • 11. School of Material Science and Engineering, Central South University of Forestry and Technology, Changsha 410004, China
  • 22. Hunan Academy of Forestry, Changsha 410018, China
  • show less
    References(32)

    [1] LI Y G, LIU X F, DONG L H et al. Preparation and high- temperature service performance of hierarchically pore-structured BN fiber aerogels[J]. Ceramics International, 36287(2022).

    [2] JIN R Z, ZHOU Z H, LIU J et al. Aerogels for thermal protection and their application in aerospace[J]. Gels, 606(2023).

    [3] GUO P F, SU L, PENG K et al. Additive manufacturing of resilient SiC nanowire aerogels[J]. ACS Nano, 6625(2022).

    [4] LIAO Y R, ZHANG S Z, YANG Z Y et al. Ambient drying to fabricate polybenzoxazine aerogels for thermal insulation in aerospace[J]. Materials Today Nano, 100517(2024).

    [7] LI M M, XU Q Y, JIANG W et al. Preparation and investigation of Fe3O4@rGO/CNF foams for electromagnetic interference shielding[J]. Fibers and Polymers, 771(2023).

    [8] ZHOU X J, LI B, XU Y et al. Tannin-furanic resin foam reinforced with cellulose nanofibers (CNF)[J]. Industrial Crops & Products, 107(2019).

    [9] SONG Y P, XUE C H, GUO W C et al. Foamed geopolymer insulation materials: research progress on insulation performance and durability[J]. Journal of Cleaner Production, 140991(2024).

    [10] ZHAO J J, LI S, TANG Y M. Preparation of building insulation foam materials by recycling industrial and agroforestry wastes[J]. Journal of Building Engineering, 105988(2023).

    [11] BURATTI C, BELLONI E, LASCARO E et al. Rice husk panels for building applications: thermal, acoustic and environmental characterization and comparison with other innovative recycled waste materials[J]. Construction and Building Materials, 338(2018).

    [12] MUTHURAJ R, LACOSTE C, LACROIX P et al. Sustainable thermal insulation biocomposites from rice husk, wheat husk, wood fibers and textile waste fibers: elaboration and performances evaluation[J]. Industrial Crops and Products, 238(2019).

    [13] ALI M, ALABDULKAREM A, NUHAIT A et al. Thermal and acoustic characteristics of novel thermal insulating materials made of eucalyptus globulus leaves and wheat straw fibers[J]. Journal of Building Engineering, 101(2020).

    [14] LIU L, LI H Q, LAZZARETTO A et al. The development history and prospects of biomass-based insulation materials for buildings[J]. Renewable and Sustainable Energy Reviews, 912(2017).

    [15] KUMAR D, ALAM M, ZOU P X W et al. Comparative analysis of building insulation material properties and performance[J]. Renewable and Sustainable Energy Reviews, 110(2020).

    [16] WANG D, FENG X M, ZHANG L P et al. Cyclotriphosphazene- bridged periodic mesoporous organosilica-integrated cellulose nanofiber aniso-tropic foam with highly flame-retardant and thermally insulating properties[J]. Chemical Engineering Journal, 121933(2019).

    [17] CHRISTINE T G, VANESSA P, CLAUDE F et al. Tailoring hybrid layered double hydroxides for the development of innovative applications[J]. Advanced Functional Materials, 1702868(2017).

    [19] HUANG F L, TIAN S Q, QI Y et al. Synthesis of FePcS-PMA-LDH cointercalation composite with enhanced visible light photo-fenton catalytic activity for BPA degradation at circumneutral pH[J]. Materials, 1951(2020).

    [20] PENG Y, WANG W, CAO J Z et al. Synthesis of 5-sulfosalicylic acid-intercalated layered double hydroxide and its effects on wood flour/polypropylene composites during accelerated UV weathering[J]. Journal of Applied Polymer Science, 44597(2017).

    [21] LI L, MA R Z, EBINA Y et al. Positively charged nanosheets derived via total delamination of layyered doubled hydroxides[J]. Chemistry of Materials, 4386(2005).

    [22] ZHANG L L, CHEN K L, HE L. Super-reinforced photothermal stability of cellulose nanofibrils films by armour-type ordered doping Mg-Al layered double hydroxides[J]. Carbohydrate Polymers, 229(2019).

    [23] ZHANG Z, SONG F F, ZHANG M et al. Cellulose nanopaper with controllable optical haze and high efficiency ultraviolet blocking for flexible optoelectronics[J]. Cellulose, 2201(2019).

    [24] DENG Y, GUAN Q Q, HE L et al. The photothermal stability of CNFs/ ZnAl-LDHs composited films: influence of the crystal morphology of ZnAl-LDHs[J]. Carbohydrate Polymers, 117981(2021).

    [25] KAUL P K, SAMSON J A, SELVAN T G et al. Synergistic effect of LDH in the presence of organophosphate on thermal and flammable properties of an epoxy nanocomposite[J]. Applied Clay Science, 234(2017).

    [26] CHEN C, TAO L, DU S Q et al. Advanced exfoliation strategies for layered double hydroxides and applications in energy conversion and storage[J]. Advanced Functional Materials, 1909832(2020).

    [27] CHEN X, WAG B Y, HAO Z F et al. Synergistic effect of multifunctional layered double hydroxide based hybrids and modified phosphagen with an active amino group for enhancing the smoke suppression and flame retardancy of epoxy[J]. ACS Omega, 21714(2022).

    [28] ZHANG S, YAN Y X, WANG W J et al. Intercalation of phosphotungstic acid into layered double hydroxides by reconstruction method and its application in intumescent flame retardant poly (lactic acid) composites[J]. Polymer Degradation and Stability, 142(2018).

    [29] XU Y, HUANG W J, CHEN X Y et al. Self-assembled ZnAl-LDH/PMo12 nano-hybrids as effective catalysts on the degradation of methyl orange under room temperature and ambient pressure[J]. Applied Catalysis A: General, 206(2018).

    [30] MENG R R, HE X M, CHEN J J et al. Silver and sodium fluorescein co-doped phosphomolybdate microspindle: synthesis and spectroscopic properties[J]. Journal of Cluster Science, 141(2019).

    [31] LI C, WU S P, CHEN Z W et al. Synthesis of Fe3O4-decorated Mg-Al layered double hydroxides magnetic nanosheets to improve anti-ultraviolet aging and microwave absorption properties used in asphalt materials[J]. Construction and Building Materials, 320(2019).

    [32] LI W, ZHU J N, SHEN N N et al. Assembling [M(P4Mo6)2] (M = Na, Mn, Na/Cu) dimeric clusters via transition metal/sodium ions into 0D to 3D phosphomolybdates[J]. CrystEngComm, 971(2019).

    [33] HONG N N, SONG L, WANG B B et al. Co-precipitation synthesis of reduced graphene oxide/NiAl-layered double hydroxide hybrid and its application in flame retarding poly (methyl methacrylate)[J]. Materials Research Bulletin, 657(2014).

    Tools

    Get Citation

    Copy Citation Text

    Liping YUAN, Yuanbo WU, Jiajing YU, Shiyan ZHANG, Yi SUN, Yunchu HU, Youhua FAN. CNFs Aerogel Composite with Phosphomolybdic Acid Intercalated Hydrotalcite: Preparation and Thermal Insulation Performance[J]. Journal of Inorganic Materials, 2025, 40(4): 415

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category:

    Received: Aug. 15, 2024

    Accepted: --

    Published Online: Sep. 2, 2025

    The Author Email: Youhua FAN (yh_fan@163.com)

    DOI:10.15541/jim20240378

    Topics