Skip to main content
Top
Published in:
Cover of the book

2020 | OriginalPaper | Chapter

Introduction to Green Nanomaterials

Authors : Pintu Pandit, T. Nadathur Gayatri

Published in: Green Nanomaterials

Publisher: Springer Singapore

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

This chapter presents an introduction to nanomaterials, which can be synthesized by green chemistry, or nano-sized functionally advanced materials which have high-performance applications in energy generation and storage, carbon dioxide fixation, electronic devices and are sustainable in terms of production and application with respect to the environment. Methods in brief of preparation of nanoparticles and nanofibres, advantages of green synthesis, and limitations of nanomaterials are discussed. This chapter also provides information related to recent research work on green nanomaterials and the available methods for their synthesis. It also gives a comprehensive overview of the recent status and suggests future directions for employing green nanomaterials for possible various application mainly in the biotechnology, agriculture and biomedical areas. The sustainability of major natural resources utilized in green nanomaterials’ synthesis is considered.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literature
go back to reference Ahmed EM (2015) Hydrogel: Preparation, characterization, and applications: a review. J Adv Res 6(2):105–121 (Elsevier)CrossRef Ahmed EM (2015) Hydrogel: Preparation, characterization, and applications: a review. J Adv Res 6(2):105–121 (Elsevier)CrossRef
go back to reference Ahmed S et al (2016) A review on plants extract mediated synthesis of silver nanoparticles for antimicrobial applications: a green expertise. J Adv Res 7(1):17–28 (Elsevier)CrossRef Ahmed S et al (2016) A review on plants extract mediated synthesis of silver nanoparticles for antimicrobial applications: a green expertise. J Adv Res 7(1):17–28 (Elsevier)CrossRef
go back to reference Amendola V, Meneghetti M (2009) Laser ablation synthesis in solution and size manipulation of noble metal nanoparticles. Phys Chem Chem Phys 11(20):3805–3821 (Royal Society of Chemistry)CrossRef Amendola V, Meneghetti M (2009) Laser ablation synthesis in solution and size manipulation of noble metal nanoparticles. Phys Chem Chem Phys 11(20):3805–3821 (Royal Society of Chemistry)CrossRef
go back to reference Anandalakshmi K, Venugobal J (2017) Green synthesis and characterization of silver nanoparticles using Vitex negundo (Karu Nochchi) leaf extract and its antibacterial activity. Med Chem 7:218–225 Anandalakshmi K, Venugobal J (2017) Green synthesis and characterization of silver nanoparticles using Vitex negundo (Karu Nochchi) leaf extract and its antibacterial activity. Med Chem 7:218–225
go back to reference Banerjee P et al (2014) Leaf extract mediated green synthesis of silver nanoparticles from widely available Indian plants: synthesis, characterization, antimicrobial property and toxicity analysis. Bioresour Bioprocess 1(1):3 (Springer)CrossRef Banerjee P et al (2014) Leaf extract mediated green synthesis of silver nanoparticles from widely available Indian plants: synthesis, characterization, antimicrobial property and toxicity analysis. Bioresour Bioprocess 1(1):3 (Springer)CrossRef
go back to reference Birla SS et al (2009) Fabrication of silver nanoparticles by Phoma glomerata and its combined effect against Escherichia coli, Pseudomonas aeruginosa and Staphylococcus aureus. Lett Appl Microbiol 48(2):173–179 (Wiley Online Library)CrossRef Birla SS et al (2009) Fabrication of silver nanoparticles by Phoma glomerata and its combined effect against Escherichia coli, Pseudomonas aeruginosa and Staphylococcus aureus. Lett Appl Microbiol 48(2):173–179 (Wiley Online Library)CrossRef
go back to reference Chakravarty A et al (2017) Green synthesis of electrospun porous carbon nanofibers from sucrose and doping of Ag nanoparticle with improved electrical and electrochemical properties. ChemistrySelect 2(7):2265–2276 (Wiley Online Library)CrossRef Chakravarty A et al (2017) Green synthesis of electrospun porous carbon nanofibers from sucrose and doping of Ag nanoparticle with improved electrical and electrochemical properties. ChemistrySelect 2(7):2265–2276 (Wiley Online Library)CrossRef
go back to reference Chandrika UG et al (2006) Hypoglycaemic action of the flavonoid fraction of. Afr J Tradit Complement Altern Med 3(2):42–50CrossRef Chandrika UG et al (2006) Hypoglycaemic action of the flavonoid fraction of. Afr J Tradit Complement Altern Med 3(2):42–50CrossRef
go back to reference Chaudhry Q, Castle L, Watkins DR (2010) Nanotechnologies in food. Royal Society of Chemistry London Chaudhry Q, Castle L, Watkins DR (2010) Nanotechnologies in food. Royal Society of Chemistry London
go back to reference Colson P, Henrist C, Cloots R (2013) Nanosphere lithography: a powerful method for the controlled manufacturing of nanomaterials. J Nanomater 2013:21 (Hindawi Publishing Corp)CrossRef Colson P, Henrist C, Cloots R (2013) Nanosphere lithography: a powerful method for the controlled manufacturing of nanomaterials. J Nanomater 2013:21 (Hindawi Publishing Corp)CrossRef
go back to reference Crane JH, Balerdi C, Maguire I (2005) Jackfruit growing in the Florida home landscape. Fact Sheet HS-882, pp 1–10 Crane JH, Balerdi C, Maguire I (2005) Jackfruit growing in the Florida home landscape. Fact Sheet HS-882, pp 1–10
go back to reference Das BR (2010) UV radiation protective clothing. Open Text J 3:14–21 (Bentham Science Publishers B. V., P. O. Box 1673 Hilversum 1200 BR The Netherlands) Das BR (2010) UV radiation protective clothing. Open Text J 3:14–21 (Bentham Science Publishers B. V., P. O. Box 1673 Hilversum 1200 BR The Netherlands)
go back to reference Dubas ST, Kumlangdudsana P, Potiyaraj P (2006) Layer-by-layer deposition of antimicrobial silver nanoparticles on textile fibers. Colloids Surf A Physicochem Eng Aspects 289(1–3):105–109 (Elsevier)CrossRef Dubas ST, Kumlangdudsana P, Potiyaraj P (2006) Layer-by-layer deposition of antimicrobial silver nanoparticles on textile fibers. Colloids Surf A Physicochem Eng Aspects 289(1–3):105–109 (Elsevier)CrossRef
go back to reference El-Newehy MH et al (2018) Green electrospining of hydroxypropyl cellulose nanofibres for drug delivery applications. J Nanosci Nanotechnol 18(2):805–814 (American Scientific Publishers)CrossRef El-Newehy MH et al (2018) Green electrospining of hydroxypropyl cellulose nanofibres for drug delivery applications. J Nanosci Nanotechnol 18(2):805–814 (American Scientific Publishers)CrossRef
go back to reference El-Nour KMMA et al (2010) Synthesis and applications of silver nanoparticles. Arab J Chem 3(3):135–140 (Elsevier)CrossRef El-Nour KMMA et al (2010) Synthesis and applications of silver nanoparticles. Arab J Chem 3(3):135–140 (Elsevier)CrossRef
go back to reference Fouda MMG (2012) Antibacterial modification of textiles using nanotechnology. In: A search for antibacterial agents. InTech Fouda MMG (2012) Antibacterial modification of textiles using nanotechnology. In: A search for antibacterial agents. InTech
go back to reference Ghorbani HR (2014) A review of methods for synthesis of Al nanoparticles. Orient J Chem 30(4):1941–1949CrossRef Ghorbani HR (2014) A review of methods for synthesis of Al nanoparticles. Orient J Chem 30(4):1941–1949CrossRef
go back to reference Hamers RJ (2017) Nanomaterials and global sustainability. Acc Chem Res 50(3):633–637 (ACS Publications)CrossRef Hamers RJ (2017) Nanomaterials and global sustainability. Acc Chem Res 50(3):633–637 (ACS Publications)CrossRef
go back to reference Hasan S (2015) A review on nanoparticles: their synthesis and types. Res J Recent Sci. ISSN 2277, p 2502 Hasan S (2015) A review on nanoparticles: their synthesis and types. Res J Recent Sci. ISSN 2277, p 2502
go back to reference Hassan MM, Wagner MH (2017) Surface modification of natural fibers for reinforced polymer composites. In: Progress in adhesion and adhesives. John Wiley & Sons Inc, pp 1–44 Hassan MM, Wagner MH (2017) Surface modification of natural fibers for reinforced polymer composites. In: Progress in adhesion and adhesives. John Wiley & Sons Inc, pp 1–44
go back to reference Johnston JH et al (2008) Gold nanoparticles as colourants in high fashion fabrics and textiles 1:712–715 Johnston JH et al (2008) Gold nanoparticles as colourants in high fashion fabrics and textiles 1:712–715
go back to reference Joshi M et al (2009) Ecofriendly antimicrobial finishing of textiles using bioactive agents based on natural products. CSIR Joshi M et al (2009) Ecofriendly antimicrobial finishing of textiles using bioactive agents based on natural products. CSIR
go back to reference Kathirvelu S, D’souza L, Dhurai B (2009) UV protection finishing of textiles using ZnO nanoparticles. CSIR Kathirvelu S, D’souza L, Dhurai B (2009) UV protection finishing of textiles using ZnO nanoparticles. CSIR
go back to reference Khalil MMH et al (2014) Green synthesis of silver nanoparticles using olive leaf extract and its antibacterial activity. Arab J Chem 7(6):1131–1139 (Elsevier)CrossRef Khalil MMH et al (2014) Green synthesis of silver nanoparticles using olive leaf extract and its antibacterial activity. Arab J Chem 7(6):1131–1139 (Elsevier)CrossRef
go back to reference Khan A et al (2016) A chemical reduction approach to the synthesis of copper nanoparticles. Int Nano Letters 6(1):21–26 (Springer)CrossRef Khan A et al (2016) A chemical reduction approach to the synthesis of copper nanoparticles. Int Nano Letters 6(1):21–26 (Springer)CrossRef
go back to reference Khodashenas B, Ghorbani HR (2014) Synthesis of copper nanoparticles: an overview of the various methods. Korean J Chem Eng 31(7):1105–1109 (Springer)CrossRef Khodashenas B, Ghorbani HR (2014) Synthesis of copper nanoparticles: an overview of the various methods. Korean J Chem Eng 31(7):1105–1109 (Springer)CrossRef
go back to reference Kiumarsi A et al (2017) ‘Extraction of dyes from Delphinium Zalil flowers and dyeing silk yarns. J Text Inst 108(1):66–70 (Taylor & Francis)CrossRef Kiumarsi A et al (2017) ‘Extraction of dyes from Delphinium Zalil flowers and dyeing silk yarns. J Text Inst 108(1):66–70 (Taylor & Francis)CrossRef
go back to reference Kołodziejczak-Radzimska A, Jesionowski T (2014) Zinc oxide—from synthesis to application: a review. Materials 7(4):2833–2881 (Multidisciplinary Digital Publishing Institute)CrossRef Kołodziejczak-Radzimska A, Jesionowski T (2014) Zinc oxide—from synthesis to application: a review. Materials 7(4):2833–2881 (Multidisciplinary Digital Publishing Institute)CrossRef
go back to reference Makarov VV et al (2014) “Green” nanotechnologies: synthesis of metal nanoparticles using plants. Acta Naturae (aнглoязычнaя вepcия). Oбщecтвo c oгpaничeннoй oтвeтcтвeннocтью Пapк-мeдиa 6(1(20)) Makarov VV et al (2014) “Green” nanotechnologies: synthesis of metal nanoparticles using plants. Acta Naturae (aнглoязычнaя вepcия). Oбщecтвo c oгpaничeннoй oтвeтcтвeннocтью Пapк-мeдиa 6(1(20))
go back to reference Malik P et al (2014) Green chemistry based benign routes for nanoparticle synthesis. J Nanopart (Hindawi) Malik P et al (2014) Green chemistry based benign routes for nanoparticle synthesis. J Nanopart (Hindawi)
go back to reference Manaia EB et al (2013) Inorganic UV filters. Braz J Pharm Sci 49(2):201–209 (SciELO Brasil)CrossRef Manaia EB et al (2013) Inorganic UV filters. Braz J Pharm Sci 49(2):201–209 (SciELO Brasil)CrossRef
go back to reference Mittal AK, Chisti Y, Banerjee UC (2013) Synthesis of metallic nanoparticles using plant extracts. Biotechnol Adv 31(2):346–356 (Elsevier)CrossRef Mittal AK, Chisti Y, Banerjee UC (2013) Synthesis of metallic nanoparticles using plant extracts. Biotechnol Adv 31(2):346–356 (Elsevier)CrossRef
go back to reference Murphy M et al (2015) Current development of silver nanoparticle preparation, investigation, and application in the field of medicine. J Nanomater 2015:5 (Hindawi Publishing Corp)CrossRef Murphy M et al (2015) Current development of silver nanoparticle preparation, investigation, and application in the field of medicine. J Nanomater 2015:5 (Hindawi Publishing Corp)CrossRef
go back to reference Naahidi S et al (2013) Biocompatibility of engineered nanoparticles for drug delivery. J Controlled Release 166(2):182–194 (Elsevier)CrossRef Naahidi S et al (2013) Biocompatibility of engineered nanoparticles for drug delivery. J Controlled Release 166(2):182–194 (Elsevier)CrossRef
go back to reference Pal SL et al (2011) Nanoparticle: an overview of preparation and characterization. J Appl Pharm Sci 1(6):228–234 Pal SL et al (2011) Nanoparticle: an overview of preparation and characterization. J Appl Pharm Sci 1(6):228–234
go back to reference Pandey R et al (2017) Colouration of textiles using roasted peanut skin-an agro processing residue. J Cleaner Prod (Elsevier) Pandey R et al (2017) Colouration of textiles using roasted peanut skin-an agro processing residue. J Cleaner Prod (Elsevier)
go back to reference Pandit P et al (2018a) Applications of textile materials using emerging sources and technology: a new perspective. Green Sustain Adv Mater Appl 2:49–83 (John Wiley & Sons, Inc. Hoboken, NJ, USA)CrossRef Pandit P et al (2018a) Applications of textile materials using emerging sources and technology: a new perspective. Green Sustain Adv Mater Appl 2:49–83 (John Wiley & Sons, Inc. Hoboken, NJ, USA)CrossRef
go back to reference Pandit P, Gayatri TN, Maiti S (2018b) Green and sustainable textile materials using natural resources. Green Sustain Adv Mater Process Charact 1:213–261 (John Wiley & Sons, Inc. Hoboken, NJ, USA)CrossRef Pandit P, Gayatri TN, Maiti S (2018b) Green and sustainable textile materials using natural resources. Green Sustain Adv Mater Process Charact 1:213–261 (John Wiley & Sons, Inc. Hoboken, NJ, USA)CrossRef
go back to reference Pandit P, Nadathu GT (2018) Characterization of green and sustainable advanced materials. Green Sustain Adv Mater Process Charact 1:35–66 (John Wiley & Sons, Inc. Hoboken, NJ, USA)CrossRef Pandit P, Nadathu GT (2018) Characterization of green and sustainable advanced materials. Green Sustain Adv Mater Process Charact 1:35–66 (John Wiley & Sons, Inc. Hoboken, NJ, USA)CrossRef
go back to reference Pavani KV, Balakrishna K, Cheemarla NK (2011) Biosynthesis of zinc nanoparticles by Aspergillus species. Int J Nanotechnol Appl 5(1):27–36 Pavani KV, Balakrishna K, Cheemarla NK (2011) Biosynthesis of zinc nanoparticles by Aspergillus species. Int J Nanotechnol Appl 5(1):27–36
go back to reference Pervez MN, Stylios GK (2018) An experimental approach to the synthesis and optimisation of a “Green” Nanofibre. Nanomaterials 8(6) (Multidisciplinary Digital Publishing Institute (MDPI)) Pervez MN, Stylios GK (2018) An experimental approach to the synthesis and optimisation of a “Green” Nanofibre. Nanomaterials 8(6) (Multidisciplinary Digital Publishing Institute (MDPI))
go back to reference Prabhu YT et al (2017) A facile biosynthesis of copper nanoparticles: a micro-structural and antibacterial activity investigation. J Saudi Chem Soc 21(2):180–185 (Elsevier)CrossRef Prabhu YT et al (2017) A facile biosynthesis of copper nanoparticles: a micro-structural and antibacterial activity investigation. J Saudi Chem Soc 21(2):180–185 (Elsevier)CrossRef
go back to reference Prasek J et al (2011) Methods for carbon nanotubes synthesis. J Mater Chem 21(40):15872–15884 (Royal Society of Chemistry)CrossRef Prasek J et al (2011) Methods for carbon nanotubes synthesis. J Mater Chem 21(40):15872–15884 (Royal Society of Chemistry)CrossRef
go back to reference Rai M, Yadav A, Gade A (2009) Silver nanoparticles as a new generation of antimicrobials. Biotechnol Adv 27(1):76–83 (Elsevier)CrossRef Rai M, Yadav A, Gade A (2009) Silver nanoparticles as a new generation of antimicrobials. Biotechnol Adv 27(1):76–83 (Elsevier)CrossRef
go back to reference Rauwel P et al (2015) Silver nanoparticles: synthesis, properties, and applications. In: Advances in materials science and engineering. Hindawi Rauwel P et al (2015) Silver nanoparticles: synthesis, properties, and applications. In: Advances in materials science and engineering. Hindawi
go back to reference Rivero PJ et al (2015) Nanomaterials for functional textiles and fibers. Nanoscale Res Lett 10(1):501 (Springer)CrossRef Rivero PJ et al (2015) Nanomaterials for functional textiles and fibers. Nanoscale Res Lett 10(1):501 (Springer)CrossRef
go back to reference Sangeetha G, Rajeshwari S, Venckatesh R (2011) Green synthesis of zinc oxide nanoparticles by aloe barbadensis miller leaf extract: structure and optical properties. Mater Res Bull 46(12):2560–2566 (Elsevier)CrossRef Sangeetha G, Rajeshwari S, Venckatesh R (2011) Green synthesis of zinc oxide nanoparticles by aloe barbadensis miller leaf extract: structure and optical properties. Mater Res Bull 46(12):2560–2566 (Elsevier)CrossRef
go back to reference Saravanan D (2007) UV protection textile materials. AUTEX Res J 7(1):53–62 Saravanan D (2007) UV protection textile materials. AUTEX Res J 7(1):53–62
go back to reference Singh M et al (2012) Natural minerals and cancer. J Appl Pharm Sci 2(04):158–165CrossRef Singh M et al (2012) Natural minerals and cancer. J Appl Pharm Sci 2(04):158–165CrossRef
go back to reference Srikulkit K, Iamsamai C, Dubas ST (2017) Development of flame retardant polyphosphoric acid coating based on the polyelectrolyte multilayers technique. J Metals Mater Miner 16(2) Srikulkit K, Iamsamai C, Dubas ST (2017) Development of flame retardant polyphosphoric acid coating based on the polyelectrolyte multilayers technique. J Metals Mater Miner 16(2)
go back to reference Subhankari I, Nayak PL (2013) Synthesis of copper nanoparticles using Syzygium aromaticum (Cloves) aqueous extract by using green chemistry. World J Nano Sci Technol 2(1):14–17 Subhankari I, Nayak PL (2013) Synthesis of copper nanoparticles using Syzygium aromaticum (Cloves) aqueous extract by using green chemistry. World J Nano Sci Technol 2(1):14–17
go back to reference Suresh S (2013) Semiconductor nanomaterials, methods and applications: a review. Nanosci Nanotechnol 3(3):62–74 (Scientific & Academic Publishing) Suresh S (2013) Semiconductor nanomaterials, methods and applications: a review. Nanosci Nanotechnol 3(3):62–74 (Scientific & Academic Publishing)
go back to reference Tang B et al (2011) Using hydroxy carboxylate to synthesize gold nanoparticles in heating and photochemical reactions and their application in textile colouration. Chem Eng J 172(1):601–607 (Elsevier)CrossRef Tang B et al (2011) Using hydroxy carboxylate to synthesize gold nanoparticles in heating and photochemical reactions and their application in textile colouration. Chem Eng J 172(1):601–607 (Elsevier)CrossRef
go back to reference Tang B et al (2012) Coloration of cotton fibers with anisotropic silver nanoparticles. Ind Eng Chem Res 51(39):12807–12813 (ACS Publications)CrossRef Tang B et al (2012) Coloration of cotton fibers with anisotropic silver nanoparticles. Ind Eng Chem Res 51(39):12807–12813 (ACS Publications)CrossRef
go back to reference Tang B et al (2015) Functional application of noble metal nanoparticles in situ synthesized on ramie fibers. Nanoscale Res Lett 10(1):366 (Springer)CrossRef Tang B et al (2015) Functional application of noble metal nanoparticles in situ synthesized on ramie fibers. Nanoscale Res Lett 10(1):366 (Springer)CrossRef
go back to reference Teli MD et al (2015) Hydrophobic silk fabric using atmospheric pressure plasma. Int J Bioresour Sci 2(1):15 (Renu Publishers) Teli MD et al (2015) Hydrophobic silk fabric using atmospheric pressure plasma. Int J Bioresour Sci 2(1):15 (Renu Publishers)
go back to reference Teli MD, Pandit P (2017a) A novel natural source Sterculia foetida fruit shell waste as colorant and ultraviolet protection for linen. J Nat Fibers, 15(3): 337—343 (Taylor & Francis) Teli MD, Pandit P (2017a) A novel natural source Sterculia foetida fruit shell waste as colorant and ultraviolet protection for linen. J Nat Fibers, 15(3): 337—343 (Taylor & Francis)
go back to reference Teli MD, Pandit P (2017b) Development of thermally stable and hygienic colored cotton fabric made by treatment with natural coconut shell extract. J Ind Text 48(1):87–118. (SAGE Publications Sage UK: London, England, p. 1528083717725113) Teli MD, Pandit P (2017b) Development of thermally stable and hygienic colored cotton fabric made by treatment with natural coconut shell extract. J Ind Text 48(1):87–118. (SAGE Publications Sage UK: London, England, p. 1528083717725113)
go back to reference Teli MD, Pandit P (2017c) Multifunctionalised silk using Delonix regia stem shell waste. Fibers Polym 18(9):1679–1690 (Springer)CrossRef Teli MD, Pandit P (2017c) Multifunctionalised silk using Delonix regia stem shell waste. Fibers Polym 18(9):1679–1690 (Springer)CrossRef
go back to reference Teli MD, Pandit P (2017e) Novel method of ecofriendly single bath dyeing and functional finishing of wool protein with coconut shell extract biomolecules. ACS Sustain Chem Eng 5(9):8323–8333 (ACS Publications) Teli MD, Pandit P (2017e) Novel method of ecofriendly single bath dyeing and functional finishing of wool protein with coconut shell extract biomolecules. ACS Sustain Chem Eng 5(9):8323–8333 (ACS Publications)
go back to reference Tolle R et al (2007) ‘Lloyd’s of London report on nanotechnology: recent development, risks and opportunities. London, England, United Kingdom, Lloyd’s of London Emerging Risk Team Tolle R et al (2007) ‘Lloyd’s of London report on nanotechnology: recent development, risks and opportunities. London, England, United Kingdom, Lloyd’s of London Emerging Risk Team
go back to reference Xia Y et al (2003) One-dimensional nanostructures: synthesis, characterization, and applications. Adv Mater 15(5):353–389 (Wiley Online Library)CrossRef Xia Y et al (2003) One-dimensional nanostructures: synthesis, characterization, and applications. Adv Mater 15(5):353–389 (Wiley Online Library)CrossRef
go back to reference Ye W et al (2006) Durable antibacterial finish on cotton fabric by using chitosan-based polymeric core-shell particles. J Appl Polym Sci 102(2):1787–1793 (Wiley Online Library)CrossRef Ye W et al (2006) Durable antibacterial finish on cotton fabric by using chitosan-based polymeric core-shell particles. J Appl Polym Sci 102(2):1787–1793 (Wiley Online Library)CrossRef
go back to reference Zhang Z, Decker EA, McClements DJ (2014) Encapsulation, protection, and release of polyunsaturated lipids using biopolymer-based hydrogel particles. Food Res Int 64:520–526 (Elsevier)CrossRef Zhang Z, Decker EA, McClements DJ (2014) Encapsulation, protection, and release of polyunsaturated lipids using biopolymer-based hydrogel particles. Food Res Int 64:520–526 (Elsevier)CrossRef
Metadata
Title
Introduction to Green Nanomaterials
Authors
Pintu Pandit
T. Nadathur Gayatri
Copyright Year
2020
Publisher
Springer Singapore
DOI
https://doi.org/10.1007/978-981-15-3560-4_1

Premium Partners