Raveendran S, Parameswaran B, Ummalyma SB et al (2018) Applications of microbial enzymes in
food industry. Food Technol Biotechnol 56(1):16–30. https://doi.org/10.17113/ftb.56.01.18.
5491
Ruales-lonfat C, Barona JF, Sienkiewicz A, Bensimon M, Vélez-colmenares J (2015) Applied
catalysis B : environmental iron oxides semiconductors are efficients for solar water disinfection
: a comparison with photo-Fenton processes at neutral pH. Appl Catal Environ 166:497–508
Ryu C, Joo S, Kim H (2016) Applied surface science two-step flash light sintering of copper
nanoparticle ink to remove substrate warping. Appl Surf Sci 384:182–191
Saber H, Alwaleed EA, Ebnalwaled KA (2017) Efficacy of silver nanoparticles mediated by Jania
rubens and Sargassum dentifolium macroalgae; characterization and biomedical applications.
Egypt J Basic Appl Sci 4:249–255
Santhoshkumar J, Kumar SV, Rajeshkumar S (2017) Synthesis of zinc oxide nanoparticles using
plant leaf extract against urinary tract infection pathogen. Res-Efficient Technol 3(4):459–465
Saratale RG, Saratale GD, Ghodake G et al (2019) Wheat straw extracted lignin in silver
nanoparticles synthesis: expanding its prophecy towards antineoplastic potency and hydrogen
peroxide sensing ability. Int J Biol Macromol 128:391–400
Sethy NK, Arif Z, Mishra PK et al (2019) Synthesis of SiO2 nanoparticle from bamboo leaf and its
incorporation in PDMS membrane to enhance its separation properties. J Polym Eng 5:1–10
Shad AA, Shad WA (2019) Review of green synthesis and antimicrobial efficacy of copper and
nickel nanoparticles. Am J Biomed Sci Res 3(6):000721. https://doi.org/10.34297/AJBSR.
2019.03.000721
Shamel NN, Pourali P, Dolatabadi S (2019) Green synthesis of gold nanoparticles using fusarium
oxysporum and antibacterial activity of its tetracycline conjugant. J de Mycologie medicale
29:7–13
Shanmugam R, Kannan C, Gurusamy A (2012) Green synthesis of silver nanoparticles using
marine brown Algae turbinaria conoides and its antibacterial activity. Int J Pharm Bio Sci 3
(4):502–510
Singh J, Dutta T, Kim K et al (2018a) ‘Green’ synthesis of metals and their oxide nanoparticles:
applications for environmental remediation. J Nanobiotechnol 16:84. https://doi.org/10.1186/
s12951-018-0408-4
Singh H, Du J, Singh P et al (2018b) Extracellular synthesis of silver nanoparticles by pseudomonas
sp. THG-LS1.4 and their antimicrobial application. J Pharmaceut Anal 8:258–264
Sinsinwar S, Sarkar MK, Suriya KR, Nithyanand P, Vadivel V (2018) Use of agricultural waste
(coconut shell) for the synthesis of silver nanoparticles and evaluation of their antibacterial
activity against selected human pathogens. Microb Pathog 124:30–37
Soleimani M, Habibi-Pirkoohi M (2017) Biosynthesis of silver nanoparticles using chlorella
vulgaris and evaluation of the antibacterial efficacy against staphylococcus aureus. Avicenna J
Med Biotechnol (3):120–125
Soni N, Prakash S (2012) Synthesis of gold nanoparticles by the fungus aspergillus Niger and its
efficacy against mosquito larvae. Rep Parasitol 2:1–7
Srinath BS, Namratha K, Byrappa K (2017) Eco-friendly synthesis of gold nanoparticles by gold
mine bacteria Brevibacillus formosus and their antibacterial and biocompatible studies. IOSR J
Pharm 7(8):53–60
Stark WJ, Stoessel PR, Wohlleben W et al (2015) Industrial applications of nanoparticles. Chem
Soc Rev 44:5793–5805
Suriati G, Mariatti M, Azizan A (2014) Synthesis of silver nanoparticles by chemical reduction
method: effect of reducing concentration and surfactant concentration. Int J Autom Mech Eng
10:1920–1927. https://doi.org/10.15282/ijame.10.2014.9.0160
Syed B, Nagendra Prasad MN, Dhananjay BL et al (2016c) Synthesis of silver nanoparticles by
endosymbiont Pseudomonas fluorescens CA 417 and their bactericidal activity. Enzym Microb
Technol 95:128–136
Syed B, Prasad NMN, Satish S (2016a) Endogenic mediated synthesis of gold nanoparticles bearing
bactericidal activity. J Microsc Ultrastruct 4:162–166
204
T. Singh et al.
food industry. Food Technol Biotechnol 56(1):16–30. https://doi.org/10.17113/ftb.56.01.18.
5491
Ruales-lonfat C, Barona JF, Sienkiewicz A, Bensimon M, Vélez-colmenares J (2015) Applied
catalysis B : environmental iron oxides semiconductors are efficients for solar water disinfection
: a comparison with photo-Fenton processes at neutral pH. Appl Catal Environ 166:497–508
Ryu C, Joo S, Kim H (2016) Applied surface science two-step flash light sintering of copper
nanoparticle ink to remove substrate warping. Appl Surf Sci 384:182–191
Saber H, Alwaleed EA, Ebnalwaled KA (2017) Efficacy of silver nanoparticles mediated by Jania
rubens and Sargassum dentifolium macroalgae; characterization and biomedical applications.
Egypt J Basic Appl Sci 4:249–255
Santhoshkumar J, Kumar SV, Rajeshkumar S (2017) Synthesis of zinc oxide nanoparticles using
plant leaf extract against urinary tract infection pathogen. Res-Efficient Technol 3(4):459–465
Saratale RG, Saratale GD, Ghodake G et al (2019) Wheat straw extracted lignin in silver
nanoparticles synthesis: expanding its prophecy towards antineoplastic potency and hydrogen
peroxide sensing ability. Int J Biol Macromol 128:391–400
Sethy NK, Arif Z, Mishra PK et al (2019) Synthesis of SiO2 nanoparticle from bamboo leaf and its
incorporation in PDMS membrane to enhance its separation properties. J Polym Eng 5:1–10
Shad AA, Shad WA (2019) Review of green synthesis and antimicrobial efficacy of copper and
nickel nanoparticles. Am J Biomed Sci Res 3(6):000721. https://doi.org/10.34297/AJBSR.
2019.03.000721
Shamel NN, Pourali P, Dolatabadi S (2019) Green synthesis of gold nanoparticles using fusarium
oxysporum and antibacterial activity of its tetracycline conjugant. J de Mycologie medicale
29:7–13
Shanmugam R, Kannan C, Gurusamy A (2012) Green synthesis of silver nanoparticles using
marine brown Algae turbinaria conoides and its antibacterial activity. Int J Pharm Bio Sci 3
(4):502–510
Singh J, Dutta T, Kim K et al (2018a) ‘Green’ synthesis of metals and their oxide nanoparticles:
applications for environmental remediation. J Nanobiotechnol 16:84. https://doi.org/10.1186/
s12951-018-0408-4
Singh H, Du J, Singh P et al (2018b) Extracellular synthesis of silver nanoparticles by pseudomonas
sp. THG-LS1.4 and their antimicrobial application. J Pharmaceut Anal 8:258–264
Sinsinwar S, Sarkar MK, Suriya KR, Nithyanand P, Vadivel V (2018) Use of agricultural waste
(coconut shell) for the synthesis of silver nanoparticles and evaluation of their antibacterial
activity against selected human pathogens. Microb Pathog 124:30–37
Soleimani M, Habibi-Pirkoohi M (2017) Biosynthesis of silver nanoparticles using chlorella
vulgaris and evaluation of the antibacterial efficacy against staphylococcus aureus. Avicenna J
Med Biotechnol (3):120–125
Soni N, Prakash S (2012) Synthesis of gold nanoparticles by the fungus aspergillus Niger and its
efficacy against mosquito larvae. Rep Parasitol 2:1–7
Srinath BS, Namratha K, Byrappa K (2017) Eco-friendly synthesis of gold nanoparticles by gold
mine bacteria Brevibacillus formosus and their antibacterial and biocompatible studies. IOSR J
Pharm 7(8):53–60
Stark WJ, Stoessel PR, Wohlleben W et al (2015) Industrial applications of nanoparticles. Chem
Soc Rev 44:5793–5805
Suriati G, Mariatti M, Azizan A (2014) Synthesis of silver nanoparticles by chemical reduction
method: effect of reducing concentration and surfactant concentration. Int J Autom Mech Eng
10:1920–1927. https://doi.org/10.15282/ijame.10.2014.9.0160
Syed B, Nagendra Prasad MN, Dhananjay BL et al (2016c) Synthesis of silver nanoparticles by
endosymbiont Pseudomonas fluorescens CA 417 and their bactericidal activity. Enzym Microb
Technol 95:128–136
Syed B, Prasad NMN, Satish S (2016a) Endogenic mediated synthesis of gold nanoparticles bearing
bactericidal activity. J Microsc Ultrastruct 4:162–166
204
T. Singh et al.
