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Erschienen in: Cellulose 1/2020

28.10.2019 | Original Research

Multifunctional UV-shielding nanocellulose films modified with halloysite nanotubes-zinc oxide nanohybrid

verfasst von: Dechao Hu, Zhilin Zhang, Maolin Liu, Jing Lin, Xiaojun Chen, Wenshi Ma

Erschienen in: Cellulose | Ausgabe 1/2020

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Abstract

The design and fabrication of multifunctional UV-shielding materials based on naturally abundant and biodegradable raw materials have far-reaching significance for various practical applications and sustainable development. In the present work, novel multifunctional cellulose nanofibrils (CNFs)/halloysite nanotubes-zinc oxide (HNTs-ZnO) hybrid films with synergic feature of excellent UV-shielding, superhydrophobic properties and thermal stability were firstly fabricated via vacuum-assisted filtration strategy and following hydrophobic modification. The successful immobilization of ZnO nano-protrusions on HNTs surface effectively suppressed the aggregation of ZnO nanoparticles, giving a positive contribution for the UV-shielding performance. Particularly, the CNFs/HNTs-ZnO hybrid films achieved a high UV-blocking efficiency in both UVA (95.7%), UVB (98.7%) and UVC (99.8%). Besides, the filtration membrane template endowed the CNFs/HNTs-ZnO hybrid films with hierarchical rough architecture, and as-fabricated hybrid films presented superhydrophobicity with a contact angle over 155° and simultaneous self-cleaning function. Moreover, the CNFs/HNTs-ZnO hybrid films also displayed an outstanding thermal and UV stability. The findings conceivably indicate that the CNFs/HNTs-ZnO hybrid films provide a versatile way for the development of sustainable multifunctional UV-shielding films and have promising applications in packaging, intelligent windows and other outdoor UV-sensitive materials areas.

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Literatur
Zurück zum Zitat Baidya A, Ganayee MA, Jakka RS, Kmc T, Das SK, Rha R, Pradeep T (2017) Organic solvent-free fabrication of durable and multifunctional superhydrophobic paper from waterborne fluorinated cellulose nanofiber building blocks. ACS Nano 11:11091–11099PubMed Baidya A, Ganayee MA, Jakka RS, Kmc T, Das SK, Rha R, Pradeep T (2017) Organic solvent-free fabrication of durable and multifunctional superhydrophobic paper from waterborne fluorinated cellulose nanofiber building blocks. ACS Nano 11:11091–11099PubMed
Zurück zum Zitat Barreca D, Ferrucci AP, Gasparotto A, Maccato C, Tondello E (2010) Temperature controlled synthesis and photocatalytic performance of ZnO nanoplatelets. Chem Vapor Depos 13:618–625 Barreca D, Ferrucci AP, Gasparotto A, Maccato C, Tondello E (2010) Temperature controlled synthesis and photocatalytic performance of ZnO nanoplatelets. Chem Vapor Depos 13:618–625
Zurück zum Zitat Cavallaro G, Chiappisi L, Pasbakhsh P, Gradzielskia M, Lazzara G (2018) A structural comparison of halloysite nanotubes of different origin by small-angle neutron scattering (SANS) and electric birefringence. Appl Clay Sci 160:71–80 Cavallaro G, Chiappisi L, Pasbakhsh P, Gradzielskia M, Lazzara G (2018) A structural comparison of halloysite nanotubes of different origin by small-angle neutron scattering (SANS) and electric birefringence. Appl Clay Sci 160:71–80
Zurück zum Zitat Chen H, Yan X, Feng Q, Zhao P, Xu X, Ng DHL, Bian L (2017) Citric acid/cysteine-modified cellulose-based materials: green preparation and their applications in anticounterfeiting, chemical sensing, and UV shielding. ACS Sustain Chem Eng 5:11387–11394 Chen H, Yan X, Feng Q, Zhao P, Xu X, Ng DHL, Bian L (2017) Citric acid/cysteine-modified cellulose-based materials: green preparation and their applications in anticounterfeiting, chemical sensing, and UV shielding. ACS Sustain Chem Eng 5:11387–11394
Zurück zum Zitat Du M, Guo B, Jia D (2006) Thermal stability and flame retardant effects of halloysite nanotubes on poly(propylene). Eur Polym J 42:1362–1369 Du M, Guo B, Jia D (2006) Thermal stability and flame retardant effects of halloysite nanotubes on poly(propylene). Eur Polym J 42:1362–1369
Zurück zum Zitat Elilarassi R, Chandrasekaran G (2010) Effect of annealing on structural and optical properties of zinc oxide films. Mater Chem Phys 121:378–384 Elilarassi R, Chandrasekaran G (2010) Effect of annealing on structural and optical properties of zinc oxide films. Mater Chem Phys 121:378–384
Zurück zum Zitat Feng Y, Li X, Li M, Ye DZ, Qiang Z, You R, Xu W (2017a) Facile preparation of biocompatible silk fibroin/cellulose nanocomposite films with high mechanical performance. ACS Sustain Chem Eng 5:6227–6236 Feng Y, Li X, Li M, Ye DZ, Qiang Z, You R, Xu W (2017a) Facile preparation of biocompatible silk fibroin/cellulose nanocomposite films with high mechanical performance. ACS Sustain Chem Eng 5:6227–6236
Zurück zum Zitat Feng X, Zhao Y, Jiang Y, Miao M, Cao S, Fang J (2017b) Use of carbon dots to enhance UV-blocking of transparent nanocellulose films. Carbohydr Polym 161:253–260PubMed Feng X, Zhao Y, Jiang Y, Miao M, Cao S, Fang J (2017b) Use of carbon dots to enhance UV-blocking of transparent nanocellulose films. Carbohydr Polym 161:253–260PubMed
Zurück zum Zitat France KJ, Hoare T, Cranston ED (2017) Review of hydrogels and aerogels containing nanocellulose. Chem Mater 29:4609–4631 France KJ, Hoare T, Cranston ED (2017) Review of hydrogels and aerogels containing nanocellulose. Chem Mater 29:4609–4631
Zurück zum Zitat Fu Y, Huang Y, Meng W, Wang Z, Bando Y, Golberg D, Tang C, Zhi C (2015) Highly ductile UV-shielding polymer composites with boron nitride nanospheres as fillers. Nanotechnology 26:115702PubMed Fu Y, Huang Y, Meng W, Wang Z, Bando Y, Golberg D, Tang C, Zhi C (2015) Highly ductile UV-shielding polymer composites with boron nitride nanospheres as fillers. Nanotechnology 26:115702PubMed
Zurück zum Zitat Fukuzumi H, Saito T, Okita Y, Isogai A (2010) Thermal stabilization of TEMPO-oxidized cellulose. Polym Degrad Stabil 95:1502–1508 Fukuzumi H, Saito T, Okita Y, Isogai A (2010) Thermal stabilization of TEMPO-oxidized cellulose. Polym Degrad Stabil 95:1502–1508
Zurück zum Zitat Gao YF, Nagai M, Masuda Y, Sato F, Seo WS, Koumoto K (2006) Surface precipitation of highly porous hydrotalcite-like film on Al from a zinc aqueous solution. Langmuir 22:3521–3527PubMed Gao YF, Nagai M, Masuda Y, Sato F, Seo WS, Koumoto K (2006) Surface precipitation of highly porous hydrotalcite-like film on Al from a zinc aqueous solution. Langmuir 22:3521–3527PubMed
Zurück zum Zitat Ge J, Zeng X, Tao X, Li X, Shen Z, Yun J, Chen J (2010) Preparation and characterization of PS-PMMA/ZnO nanocomposite films with novel properties of high transparency and UV-shielding capacity. J Appl Polym Sci 118:1507–1512 Ge J, Zeng X, Tao X, Li X, Shen Z, Yun J, Chen J (2010) Preparation and characterization of PS-PMMA/ZnO nanocomposite films with novel properties of high transparency and UV-shielding capacity. J Appl Polym Sci 118:1507–1512
Zurück zum Zitat Han C, Wang F, Gao C, Liu P, Ding Y, Zhang S, Yang M (2015) Transparent epoxy–ZnO/CdS nanocomposites with tunable UV and blue light-shielding capabilities. J Mater Chem C 3:5065–5072 Han C, Wang F, Gao C, Liu P, Ding Y, Zhang S, Yang M (2015) Transparent epoxy–ZnO/CdS nanocomposites with tunable UV and blue light-shielding capabilities. J Mater Chem C 3:5065–5072
Zurück zum Zitat Ho YM, Zheng WT, Li YA, Liu JW, Qi JL (2008) Field emission properties of hybrid carbon nanotube–ZnO nanoparticles. J Phys Chem C 112:17702–17708 Ho YM, Zheng WT, Li YA, Liu JW, Qi JL (2008) Field emission properties of hybrid carbon nanotube–ZnO nanoparticles. J Phys Chem C 112:17702–17708
Zurück zum Zitat Hong D, Sliozberg YR, Snyder JF, Joshua S, Chantawansri TL, Orlicki JA, Walck SD, Reiner RS, Rudie AW (2015) Highly transparent and toughened poly(methyl methacrylate) nanocomposite films containing networks of cellulose nanofibrils. ACS Appl Mater Interfaces 7:25464–25472 Hong D, Sliozberg YR, Snyder JF, Joshua S, Chantawansri TL, Orlicki JA, Walck SD, Reiner RS, Rudie AW (2015) Highly transparent and toughened poly(methyl methacrylate) nanocomposite films containing networks of cellulose nanofibrils. ACS Appl Mater Interfaces 7:25464–25472
Zurück zum Zitat Hu T, Núria B, Qi Z (2015) A transparent, hazy, and strong macroscopic ribbon of oriented cellulose nanofibrils bearing poly(ethylene glycol). Adv Mater 27:2070–2076 Hu T, Núria B, Qi Z (2015) A transparent, hazy, and strong macroscopic ribbon of oriented cellulose nanofibrils bearing poly(ethylene glycol). Adv Mater 27:2070–2076
Zurück zum Zitat Huang L, Lu C, Wang F, Dong X (2016) Piezoelectric property of PVDF/graphene composite films using 1H, 1H, 2H, 2H-Perfluorooctyltriethoxysilane as a modifying agent. J Alloys Compound 688:885–892 Huang L, Lu C, Wang F, Dong X (2016) Piezoelectric property of PVDF/graphene composite films using 1H, 1H, 2H, 2H-Perfluorooctyltriethoxysilane as a modifying agent. J Alloys Compound 688:885–892
Zurück zum Zitat Hussain ASY, Hou-Yong Y, Chuang W, Lili Y, Ying G, Linxi H, Juming Y (2018) Sheet-like cellulose nanocrystal-ZnO nanohybrids as multifunctional reinforcing agents in biopolyester composite nanofibers with ultrahigh UV-shielding and antibacterial performances. ACS Appl Biol Mater 1:714–727 Hussain ASY, Hou-Yong Y, Chuang W, Lili Y, Ying G, Linxi H, Juming Y (2018) Sheet-like cellulose nanocrystal-ZnO nanohybrids as multifunctional reinforcing agents in biopolyester composite nanofibers with ultrahigh UV-shielding and antibacterial performances. ACS Appl Biol Mater 1:714–727
Zurück zum Zitat Jiang F, Hsieh YL (2016) Self-assembling of TEMPO oxidized cellulose nanofibrils as affected by protonation of surface carboxyls and drying methods. ACS Sustain Chem Eng 4:1041–1049 Jiang F, Hsieh YL (2016) Self-assembling of TEMPO oxidized cellulose nanofibrils as affected by protonation of surface carboxyls and drying methods. ACS Sustain Chem Eng 4:1041–1049
Zurück zum Zitat Jiang Y, Song Y, Miao M, Cao S, Feng X, Fang J, Shi L (2015) Transparent nanocellulose hybrid films functionalized with ZnO nanostructures for UV-blocking. J Mater Chem C 3:6717–6724 Jiang Y, Song Y, Miao M, Cao S, Feng X, Fang J, Shi L (2015) Transparent nanocellulose hybrid films functionalized with ZnO nanostructures for UV-blocking. J Mater Chem C 3:6717–6724
Zurück zum Zitat Kai D, Chong HM, Chow LP, Jiang L, Lin Q, Zhang K, Zhang H, Zhang Z, Loh XJ (2018) Strong and biocompatible lignin/poly(3-hydroxybutyrate) composite nanofibers. Compos Sci Technol 158:26–33 Kai D, Chong HM, Chow LP, Jiang L, Lin Q, Zhang K, Zhang H, Zhang Z, Loh XJ (2018) Strong and biocompatible lignin/poly(3-hydroxybutyrate) composite nanofibers. Compos Sci Technol 158:26–33
Zurück zum Zitat Klemm D, Heublein B, Fink HP, Bohn A (2005) Cellulose: fascinating biopolymer and sustainable raw material. Angew Chem Int Ed 44:3358–3393 Klemm D, Heublein B, Fink HP, Bohn A (2005) Cellulose: fascinating biopolymer and sustainable raw material. Angew Chem Int Ed 44:3358–3393
Zurück zum Zitat Klemm D, Kramer F, Moritz S, Lindström T, Ankerfors M, Gray D, Dorris A (2011) Nanocelluloses: a new family of nature-based materials. Angew Chem Int Ed 50:5438–5466 Klemm D, Kramer F, Moritz S, Lindström T, Ankerfors M, Gray D, Dorris A (2011) Nanocelluloses: a new family of nature-based materials. Angew Chem Int Ed 50:5438–5466
Zurück zum Zitat Laguardia L, Ricci D, Vassallo E, Cremona A, Mesto E, Grezzi F, Dellera F (2010) Deposition of super-hydrophobic and oleophobic fluorocarbon films in radio frequency glow discharges. Macromol Symp 247:295–302 Laguardia L, Ricci D, Vassallo E, Cremona A, Mesto E, Grezzi F, Dellera F (2010) Deposition of super-hydrophobic and oleophobic fluorocarbon films in radio frequency glow discharges. Macromol Symp 247:295–302
Zurück zum Zitat Lazzara G, Cavallaro G, Panchal A, Fakhrullin R, Stavitskaya A, Vinokurov V, Lvov Y (2018) An assembly of organic–inorganic composites using halloysite clay nanotubes. Curr Opin Colloid Interface 35:42–50 Lazzara G, Cavallaro G, Panchal A, Fakhrullin R, Stavitskaya A, Vinokurov V, Lvov Y (2018) An assembly of organic–inorganic composites using halloysite clay nanotubes. Curr Opin Colloid Interface 35:42–50
Zurück zum Zitat Le D, Kongparakul S, Samart C, Phanthong P, Karnjanakom S, Abudula A, Guan G (2016) Preparing hydrophobic nanocellulose-silica film by a facile one-pot method. Carbohydr Polym 153:266–274PubMed Le D, Kongparakul S, Samart C, Phanthong P, Karnjanakom S, Abudula A, Guan G (2016) Preparing hydrophobic nanocellulose-silica film by a facile one-pot method. Carbohydr Polym 153:266–274PubMed
Zurück zum Zitat Li S, Toprak MS, Jo YS, Dobson J, Kim DK, Muhammed M (2010) Bulk synthesis of transparent and homogeneous polymeric hybrid materials with ZnO quantum dots and PMMA. Adv Mater 19:4347–4352 Li S, Toprak MS, Jo YS, Dobson J, Kim DK, Muhammed M (2010) Bulk synthesis of transparent and homogeneous polymeric hybrid materials with ZnO quantum dots and PMMA. Adv Mater 19:4347–4352
Zurück zum Zitat Lisuzzo L, Cavallaro G, Pasbakhsh P, Milioto S, Lazzara G (2019) Why does vacuum drive to the loading of halloysite nanotubes? The key role of water confinement. J Colloid Interface Sci 547:361–369PubMed Lisuzzo L, Cavallaro G, Pasbakhsh P, Milioto S, Lazzara G (2019) Why does vacuum drive to the loading of halloysite nanotubes? The key role of water confinement. J Colloid Interface Sci 547:361–369PubMed
Zurück zum Zitat Liu M, Guo B, Du M, Cai X, Jia D (2007) Properties of halloysite nanotube–epoxy resin hybrids and the interfacial reactions in the systems. Nanotechnology 18:455703 Liu M, Guo B, Du M, Cai X, Jia D (2007) Properties of halloysite nanotube–epoxy resin hybrids and the interfacial reactions in the systems. Nanotechnology 18:455703
Zurück zum Zitat Liu M, Guo B, Zou Q, Du M, Jia D (2008) Interactions between halloysite nanotubes and 2,5-bis(2-benzoxazolyl) thiophene and their effects on reinforcement of polypropylene/halloysite nanocomposites. Nanotechnology 19:205709PubMed Liu M, Guo B, Zou Q, Du M, Jia D (2008) Interactions between halloysite nanotubes and 2,5-bis(2-benzoxazolyl) thiophene and their effects on reinforcement of polypropylene/halloysite nanocomposites. Nanotechnology 19:205709PubMed
Zurück zum Zitat Liu H, Szunerits S, Pisarek M, Xu W, Boukherroub R (2009) Preparation of superhydrophobic coatings on zinc, silicon, and steel by a solution-immersion technique. ACS Appl Mater Inter 1:2086–2091 Liu H, Szunerits S, Pisarek M, Xu W, Boukherroub R (2009) Preparation of superhydrophobic coatings on zinc, silicon, and steel by a solution-immersion technique. ACS Appl Mater Inter 1:2086–2091
Zurück zum Zitat Liu M, Jia Z, Jia D, Zhou C (2014) Recent advance in research on halloysite nanotubes-polymer nanocomposite. Prog Polym Sci 39:1498–1525 Liu M, Jia Z, Jia D, Zhou C (2014) Recent advance in research on halloysite nanotubes-polymer nanocomposite. Prog Polym Sci 39:1498–1525
Zurück zum Zitat Liu Y, Yu SH, Bergström L (2017) Transparent and flexible nacre-like hybrid films of aminoclays and carboxylated cellulose nanofibrils. Adv Funct Mater 28:1703277 Liu Y, Yu SH, Bergström L (2017) Transparent and flexible nacre-like hybrid films of aminoclays and carboxylated cellulose nanofibrils. Adv Funct Mater 28:1703277
Zurück zum Zitat Luo J, Zhang M, Yang B, Liu G, Tan J, Nie J, Song S (2019) A promising transparent and UV-shielding composite film prepared by aramid nanofibers and nanofibrillated cellulose. Carbohydr Polym 203:110–118PubMed Luo J, Zhang M, Yang B, Liu G, Tan J, Nie J, Song S (2019) A promising transparent and UV-shielding composite film prepared by aramid nanofibers and nanofibrillated cellulose. Carbohydr Polym 203:110–118PubMed
Zurück zum Zitat Makaremi M, Pasbakhsh P, Cavallaro G, Lazzara G, Aw YK, Lee SM, Milioto S (2017) Effect of morphology and size of halloysite nanotubes on functional pectin bionanocomposites for food packaging applications. ACS Appl Mater Interface 9:17476–17488 Makaremi M, Pasbakhsh P, Cavallaro G, Lazzara G, Aw YK, Lee SM, Milioto S (2017) Effect of morphology and size of halloysite nanotubes on functional pectin bionanocomposites for food packaging applications. ACS Appl Mater Interface 9:17476–17488
Zurück zum Zitat Mark B, Heidi P, Kathrin MKN, Annette P, Gers-Barlag H, Olaf G, Jean K (2004) Induction of the photoaging-associated mitochondrial common deletion in vivo in normal human skin. J Invest Dermatol 122:1277–1283 Mark B, Heidi P, Kathrin MKN, Annette P, Gers-Barlag H, Olaf G, Jean K (2004) Induction of the photoaging-associated mitochondrial common deletion in vivo in normal human skin. J Invest Dermatol 122:1277–1283
Zurück zum Zitat Massaro M, Cavallaro G, Colletti C, D’Azzo G, Guernelli S, Lazzara G, Pieraccini S, Riela S (2018) Halloysite nanotubes for efficient loading, stabilization and controlled release of insulin. J Colloid Interface Sci 524:156–164PubMed Massaro M, Cavallaro G, Colletti C, D’Azzo G, Guernelli S, Lazzara G, Pieraccini S, Riela S (2018) Halloysite nanotubes for efficient loading, stabilization and controlled release of insulin. J Colloid Interface Sci 524:156–164PubMed
Zurück zum Zitat Moon RJ, Martini A, Nairn J, Simonsen J, Youngblood J (2011) Cellulose nanomaterials review: structure, properties and nanocomposites. Chem Soc Rev 40:3941–3994PubMed Moon RJ, Martini A, Nairn J, Simonsen J, Youngblood J (2011) Cellulose nanomaterials review: structure, properties and nanocomposites. Chem Soc Rev 40:3941–3994PubMed
Zurück zum Zitat Niu X, Liu Y, Fang G, Huang C, Rojas OJ, Pan H (2018) Highly transparent, strong and flexible films with modified cellulose nanofiber bearing UV shielding property. Biomacromolecules 19:4565–4575PubMed Niu X, Liu Y, Fang G, Huang C, Rojas OJ, Pan H (2018) Highly transparent, strong and flexible films with modified cellulose nanofiber bearing UV shielding property. Biomacromolecules 19:4565–4575PubMed
Zurück zum Zitat Nostro PL, Baglioni P (2008) Synthesis and characterization of zinc oxide nanoparticles: application to textiles as UV-absorbers. J Nanopart Res 10:679–689 Nostro PL, Baglioni P (2008) Synthesis and characterization of zinc oxide nanoparticles: application to textiles as UV-absorbers. J Nanopart Res 10:679–689
Zurück zum Zitat Orsolini P, Antonini C, Stojanovic A, Malfait WJ, Caseri WR, Zimmermann T (2018) Superhydrophobicity of nanofibrillated cellulose materials through polysiloxane nanofilaments. Cellulose 25:1127–1146 Orsolini P, Antonini C, Stojanovic A, Malfait WJ, Caseri WR, Zimmermann T (2018) Superhydrophobicity of nanofibrillated cellulose materials through polysiloxane nanofilaments. Cellulose 25:1127–1146
Zurück zum Zitat Peng H, Liu X, Wei T, Ma R (2017) Facile synthesis and characterization of ZnO nanoparticles grown on halloysite nanotubes for enhanced photocatalytic properties. Sci Rep 7:2250PubMedPubMedCentral Peng H, Liu X, Wei T, Ma R (2017) Facile synthesis and characterization of ZnO nanoparticles grown on halloysite nanotubes for enhanced photocatalytic properties. Sci Rep 7:2250PubMedPubMedCentral
Zurück zum Zitat Rajalakshmi R, Angappane S (2014) Effect of thickness on the structural and optical properties of sputtered ZnO and ZnO:Mn thin films. J Alloys Compd 615:355–362 Rajalakshmi R, Angappane S (2014) Effect of thickness on the structural and optical properties of sputtered ZnO and ZnO:Mn thin films. J Alloys Compd 615:355–362
Zurück zum Zitat Saetun V, Chiachun C, Riyajan SA, Kaewtatip K (2017) Green composites based on thermoplastic starch and rubber wood sawdust. Polym Compos 38:1063–1069 Saetun V, Chiachun C, Riyajan SA, Kaewtatip K (2017) Green composites based on thermoplastic starch and rubber wood sawdust. Polym Compos 38:1063–1069
Zurück zum Zitat Sheng C, Song Y, Feng X (2018) Highly transparent and hazy cellulose nanopaper simultaneously with a self-cleaning superhydrophobic surface. ACS Sustain Chem Eng 6:5173–5181 Sheng C, Song Y, Feng X (2018) Highly transparent and hazy cellulose nanopaper simultaneously with a self-cleaning superhydrophobic surface. ACS Sustain Chem Eng 6:5173–5181
Zurück zum Zitat Soares JW, Whitten JE, Oblas DW, Steeves DM (2008) Novel photoluminescence properties of surface-modified nanocrystalline zinc oxide: toward a reactive scaffold. Langmuir 24:371–374PubMed Soares JW, Whitten JE, Oblas DW, Steeves DM (2008) Novel photoluminescence properties of surface-modified nanocrystalline zinc oxide: toward a reactive scaffold. Langmuir 24:371–374PubMed
Zurück zum Zitat Soni B, Hassan EB, Mahmoud B (2015) Chemical isolation and characterization of different cellulose nanofibers from cotton stalks. Carbohydr Polym 134:581–589PubMed Soni B, Hassan EB, Mahmoud B (2015) Chemical isolation and characterization of different cellulose nanofibers from cotton stalks. Carbohydr Polym 134:581–589PubMed
Zurück zum Zitat Su X, Li H, Lai X, Yang Z, Chen Z, Wu W, Zeng X (2018) Vacuum-assisted layer-by-layer superhydrophobic carbon nanotube films with electrothermal and photothermal effects for deicing and controllable manipulation. J Mater Chem A 6:16910–16919 Su X, Li H, Lai X, Yang Z, Chen Z, Wu W, Zeng X (2018) Vacuum-assisted layer-by-layer superhydrophobic carbon nanotube films with electrothermal and photothermal effects for deicing and controllable manipulation. J Mater Chem A 6:16910–16919
Zurück zum Zitat Susanna A, Armelao L, Callone E, Dirè S, D’Arienzo M, Credico BD, Giannini L, Hanel T, Morazzoni F, Scotti R (2015) ZnO nanoparticles anchored to silica filler. A curing accelerator for isoprene rubber composites. Chem Eng J 275:245–252 Susanna A, Armelao L, Callone E, Dirè S, D’Arienzo M, Credico BD, Giannini L, Hanel T, Morazzoni F, Scotti R (2015) ZnO nanoparticles anchored to silica filler. A curing accelerator for isoprene rubber composites. Chem Eng J 275:245–252
Zurück zum Zitat Tam KH, Cheung CK, Leung YH, Djurišić AB, Ling CC, Beling CD, Fung S, Kwok WM, Chan WK, Phillips DL (2006) Defects in ZnO nanorods prepared by a hydrothermal method. J Phys Chem B 110:20865–20871PubMed Tam KH, Cheung CK, Leung YH, Djurišić AB, Ling CC, Beling CD, Fung S, Kwok WM, Chan WK, Phillips DL (2006) Defects in ZnO nanorods prepared by a hydrothermal method. J Phys Chem B 110:20865–20871PubMed
Zurück zum Zitat Tarrés Q, Boufi S, Mutjé P, Delgado-Aguilar M (2017) Enzymatically hydrolyzed and TEMPO-oxidized cellulose nanofibers for the production of nanopapers: morphological, optical, thermal and mechanical properties. Cellulose 24:3943–3954 Tarrés Q, Boufi S, Mutjé P, Delgado-Aguilar M (2017) Enzymatically hydrolyzed and TEMPO-oxidized cellulose nanofibers for the production of nanopapers: morphological, optical, thermal and mechanical properties. Cellulose 24:3943–3954
Zurück zum Zitat Tu Y, Zhou L, Jin YZ, Gao C, Ye ZZ, Yang YF, Wang QL (2010) Transparent and flexible thin films of ZnO-polystyrene nanocomposite for UV-shielding applications. J Mater Chem 20:1594–1599 Tu Y, Zhou L, Jin YZ, Gao C, Ye ZZ, Yang YF, Wang QL (2010) Transparent and flexible thin films of ZnO-polystyrene nanocomposite for UV-shielding applications. J Mater Chem 20:1594–1599
Zurück zum Zitat Ul-Islam M, Khattak WA, Ullah MW, Khan S, Park JK (2014) Synthesis of regenerated bacterial cellulose-zinc oxide nanocomposite films for biomedical applications. Cellulose 21:433–447 Ul-Islam M, Khattak WA, Ullah MW, Khan S, Park JK (2014) Synthesis of regenerated bacterial cellulose-zinc oxide nanocomposite films for biomedical applications. Cellulose 21:433–447
Zurück zum Zitat Wang Y, Su J, Li T, Ma P, Bai H, Xie Y, Chen M, Dong W (2017) A novel UV-shielding and transparent polymer film: when bio-inspired dopamine-melanin hollow nanoparticles join polymer. ACS Appl Mater Interface 9:36281–36289 Wang Y, Su J, Li T, Ma P, Bai H, Xie Y, Chen M, Dong W (2017) A novel UV-shielding and transparent polymer film: when bio-inspired dopamine-melanin hollow nanoparticles join polymer. ACS Appl Mater Interface 9:36281–36289
Zurück zum Zitat Yan Q, Sabo R, Wu Y, Zhu JY, Cai Z (2015) Self-assembled optically transparent cellulose nanofibril films: effect of nanofibril morphology and drying procedure. Cellulose 22:1091–1102 Yan Q, Sabo R, Wu Y, Zhu JY, Cai Z (2015) Self-assembled optically transparent cellulose nanofibril films: effect of nanofibril morphology and drying procedure. Cellulose 22:1091–1102
Zurück zum Zitat Yuan P, Southon PD, Liu Z, Green MER, Hook JM, Antill SJ, Kepert CJ, Antill J (2008) Functionalization of halloysite clay nanotubes by grafting with γ-aminopropyltriethoxysilane. J Phys Chem C 112:15742–15751 Yuan P, Southon PD, Liu Z, Green MER, Hook JM, Antill SJ, Kepert CJ, Antill J (2008) Functionalization of halloysite clay nanotubes by grafting with γ-aminopropyltriethoxysilane. J Phys Chem C 112:15742–15751
Zurück zum Zitat Zeng G, He Y, Yu Z, Zhan Y, Ma L, Zhang L (2016) Preparation and characterization of a novel PVDF ultrafiltration membrane by blending with TiO2-HNTs nanocomposites. Appl Surf Sci 371:624–632 Zeng G, He Y, Yu Z, Zhan Y, Ma L, Zhang L (2016) Preparation and characterization of a novel PVDF ultrafiltration membrane by blending with TiO2-HNTs nanocomposites. Appl Surf Sci 371:624–632
Zurück zum Zitat Zhang Y, Zhuang S, Xu X, Hu J (2013) Transparent and UV-shielding ZnO@PMMA nanocomposite films. Opt Mater 36:169–172 Zhang Y, Zhuang S, Xu X, Hu J (2013) Transparent and UV-shielding ZnO@PMMA nanocomposite films. Opt Mater 36:169–172
Metadaten
Titel
Multifunctional UV-shielding nanocellulose films modified with halloysite nanotubes-zinc oxide nanohybrid
verfasst von
Dechao Hu
Zhilin Zhang
Maolin Liu
Jing Lin
Xiaojun Chen
Wenshi Ma
Publikationsdatum
28.10.2019
Verlag
Springer Netherlands
Erschienen in
Cellulose / Ausgabe 1/2020
Print ISSN: 0969-0239
Elektronische ISSN: 1572-882X
DOI
https://doi.org/10.1007/s10570-019-02796-0

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