162
S. Sahithya and C. Krishnaveni
Patil RS, Kokate MR, Kolekar SS (2012) Bioinspired synthesis of highly stabilized silver nanoparticles using Ocimum tenuiflorum leaf extract and their antibacterial activity”. Spectrochimica
Acta A 91:234–238
Picariello G, Sciammaro L, Siano F, Volpe MG, Puppo MC, Mamone GF (2017) Comparative
analysis of C-glycosidic flavonoids from Prosopis spp. and Ceratonia siliqua seed germ flour.
Food Res Int 99:730–738
Raja K, Saravanakumar A, Vijayakumar R (2012) Efficient synthesis of silver nanoparticles from
Prosopis juliflora leaf extract and its antimicrobial activity using sewage. Spectrochim Acta a
Mol Biomol Spectrosc 97:490–494
Raina S, Roy A, Bharadvaja N (2020) Degradation of dyes using biologically synthesized silver and
copper nanoparticles. Environ Nanotechno Monit Manag 13:100278. https://doi.org/10.1016/j.
enmm.2019.100278
Ruto MC, Ngugi CM, Kareru PG, Cheruiyot K, Rechab SO, Madivoli ES, Maina EG (2018)
Antioxidant activity and antimicrobial properties of Entada leptostachya and Prosopis juliflora
extracts. J Med Plants Econ Dev 2:1–8
Thakur R, Singh R, Saxena P, Mani A (2014) Evaluation of antibacterial activity of Prosopis juliflora
leaves. Afr J Tradit Complement Altern Med 11(3):182–188
Vanaja M, Paulkumar K, Baburaja M, Rajeshkumar S, Gnanajobitha G, Malarkodi C, Sivakavinesan
M, Annadurai G (2014) Degradation of methylene blue using biologically synthesized silver
nanoparticles. Bioinorg Chem App 2014:742346. https://doi.org/10.1155/2014/742346
Zainal AS, Abdel-Rahim AM, Abu-Ali RM, Radwan SS (1988) Antimicrobial substance(s) in the
leaf litter of the xerophyte Prosopis juliflora. Zentral Blattfür Mikrobiologie 143:375–381
S. Sahithya and C. Krishnaveni
Patil RS, Kokate MR, Kolekar SS (2012) Bioinspired synthesis of highly stabilized silver nanoparticles using Ocimum tenuiflorum leaf extract and their antibacterial activity”. Spectrochimica
Acta A 91:234–238
Picariello G, Sciammaro L, Siano F, Volpe MG, Puppo MC, Mamone GF (2017) Comparative
analysis of C-glycosidic flavonoids from Prosopis spp. and Ceratonia siliqua seed germ flour.
Food Res Int 99:730–738
Raja K, Saravanakumar A, Vijayakumar R (2012) Efficient synthesis of silver nanoparticles from
Prosopis juliflora leaf extract and its antimicrobial activity using sewage. Spectrochim Acta a
Mol Biomol Spectrosc 97:490–494
Raina S, Roy A, Bharadvaja N (2020) Degradation of dyes using biologically synthesized silver and
copper nanoparticles. Environ Nanotechno Monit Manag 13:100278. https://doi.org/10.1016/j.
enmm.2019.100278
Ruto MC, Ngugi CM, Kareru PG, Cheruiyot K, Rechab SO, Madivoli ES, Maina EG (2018)
Antioxidant activity and antimicrobial properties of Entada leptostachya and Prosopis juliflora
extracts. J Med Plants Econ Dev 2:1–8
Thakur R, Singh R, Saxena P, Mani A (2014) Evaluation of antibacterial activity of Prosopis juliflora
leaves. Afr J Tradit Complement Altern Med 11(3):182–188
Vanaja M, Paulkumar K, Baburaja M, Rajeshkumar S, Gnanajobitha G, Malarkodi C, Sivakavinesan
M, Annadurai G (2014) Degradation of methylene blue using biologically synthesized silver
nanoparticles. Bioinorg Chem App 2014:742346. https://doi.org/10.1155/2014/742346
Zainal AS, Abdel-Rahim AM, Abu-Ali RM, Radwan SS (1988) Antimicrobial substance(s) in the
leaf litter of the xerophyte Prosopis juliflora. Zentral Blattfür Mikrobiologie 143:375–381
