Shrivastava S, Bera T, Roy A, Singh G, Ramachandrarao P, Dash D (2007) Characterization of
enhanced antibacterial effects of novel silver nanoparticles. Nanotechnol 18:225103
Siddiqui MH, Al-Whaibi MH, Faisal M, Al Sahli AA (2014) Nano-silicon dioxide mitigates the
adverse effects of salt stress on Cucurbita pepo L. Environ Toxicol Chem 33:2429–2437
Siddiqui MH, Al-Whaibi MH, Mohammad F (eds) (2015) Nanotechnology and plant sciences:
nanoparticles and their impact on plants. Springer, Cham
Singh S, Singh M, Agrawal VV, Kumar A (2010) An attempt to develop surface plasmon resonance
based immunosensor for Karnal bunt (Tilletia indica) diagnosis based on the experience of
nano-gold based lateral flow immunodipstick test. Thin Solid Films 519:1156–1159
Singh S, Vishwakarma K, Singh S, Sharma S, Dubey NK, Singh VK, Liu S, Tripathi DK, Chauhan
DK (2017) Understanding the plant and nanoparticle interface at transcriptomic and proteomic
level: a concentric overview. Plant Gene 11:265–272
Song SL, Liu XH, Jiang JH, Qian YH, Zhang N, Wu QH (2009) Stability of triazophos in selfnanoemulsifying pesticide delivery system. Colloid Surf A 350:57–62
Sorrentino A, Gorrasi G, Vittoria V (2007) Potential perspectives of bio-nanocomposites for food
packaging applications. Trends Food Sci Technol 18:84–95
Srivastava AK, Dev A, Karmakar S (2018) Nanosensors and nanobiosensors in food and agriculture. Environ Chem Lett 16:161
Srivastava S, Usmani Z, Atanasov AG, Singh VK, Singh NP, Abdel-Azeem AM, Prasad R, Gupta
G, Sharma M, Bhargava A (2021) Biological nanofactories: using living forms for metal
nanoparticle synthesis. Mini-Rev Med Chem 21(2):245–265. https://doi.org/10.2174/
1389557520999201116163012
Su MY, Hong FS, Liu C, Wu X, Liu XQ, Chen L, Gao FQ, Yang F, Li Z (2007) Effects of nanoanatase TiO 2 on absorption, distribution of light, and photoreduction activities of chloroplast
membrane of spinach. Biol Trace Elem Res 131:101–101
Su C, Puls RW, Krug TA, Watling MT, O’Hara SK, Quinn JW, Ruiz NE (2012) A two and halfyear-performance evaluation of a field test on treatment of source zone tetrachloroethene and its
chlorinated daughter products using emulsified zero valent iron nanoparticles. Water Res
46:5071–5084
Syu YY, Hung JH, Chen JC, Chuang HW (2014) Impacts of size and shape of silver nanoparticles
on Arabidopsis plant growth and gene expression. Plant Physiol Biochem 83:57–64
Tao F (2012) Synthesis, catalysis, surface chemistry and structure of bimetallic nanocatalysts.
Chem Soc Rev 41:7977–7979
Tarafdar JC, Sharma S, Raliya R (2013) Nanotechnology: interdisciplinary science of applications.
Afr J Biotechnol 12:219–226
Tarafdar JC, Raliya R, Mahawar H, Rathore I (2014) Development of zinc nanofertilizer to enhance
crop production in pearl millet (Pennisetum americanum). Agric Res 3:257–262
Teodoro S, Micaela B, David KW (2010) Novel use of nano-structured alumina as an insecticide.
Pest Manag Sci 66:577–579
Thangadurai D, Sangeetha J, Prasad R (2020a) Functional bionanomaterials. Springer International
Publishing. ISBN 978–3–030-41464-1. https://www.springer.com/gp/book/9783030414634
Thangadurai D, Sangeetha J, Prasad R (2020b) Nanotechnology for food, agriculture, and environment. Springer International Publishing. ISBN 978–3–030-31938-0. https://www.springer.com/
gp/book/9783030319373
Thul ST, Sarangi BK (2015) Implications of nanotechnology on plant productivity and its
rhizospheric environment. In: Nanotechnology and plant sciences. Springer, Cham, pp 37–53
Tolaymat TM, El Badawy AM, Genaidy A, Scheckel KG, Luxton TP, Suidan M (2010) An
evidence-based environmental perspective of manufactured silver nanoparticle in syntheses
and applications: a systematic review and critical appraisal of peer-reviewed scientific papers.
Sci Total Environ 408:999–1006
Tripathi DK, Singh S, Singh S, Srivastava PK, Singh VP, Singh S, Prasad SM, Singh PK, Dubey
NK, Pandey AC, Chauhan DK (2017a) Nitric oxide alleviates silver nanoparticles (AgNPs)induced phytotoxicity in Pisum sativum seedlings. Plant Physiol Biochem 110:167–177
1 Nanotechnology in Agriculture, the Food Sector, and Remediation: Prospects,. . .
31
enhanced antibacterial effects of novel silver nanoparticles. Nanotechnol 18:225103
Siddiqui MH, Al-Whaibi MH, Faisal M, Al Sahli AA (2014) Nano-silicon dioxide mitigates the
adverse effects of salt stress on Cucurbita pepo L. Environ Toxicol Chem 33:2429–2437
Siddiqui MH, Al-Whaibi MH, Mohammad F (eds) (2015) Nanotechnology and plant sciences:
nanoparticles and their impact on plants. Springer, Cham
Singh S, Singh M, Agrawal VV, Kumar A (2010) An attempt to develop surface plasmon resonance
based immunosensor for Karnal bunt (Tilletia indica) diagnosis based on the experience of
nano-gold based lateral flow immunodipstick test. Thin Solid Films 519:1156–1159
Singh S, Vishwakarma K, Singh S, Sharma S, Dubey NK, Singh VK, Liu S, Tripathi DK, Chauhan
DK (2017) Understanding the plant and nanoparticle interface at transcriptomic and proteomic
level: a concentric overview. Plant Gene 11:265–272
Song SL, Liu XH, Jiang JH, Qian YH, Zhang N, Wu QH (2009) Stability of triazophos in selfnanoemulsifying pesticide delivery system. Colloid Surf A 350:57–62
Sorrentino A, Gorrasi G, Vittoria V (2007) Potential perspectives of bio-nanocomposites for food
packaging applications. Trends Food Sci Technol 18:84–95
Srivastava AK, Dev A, Karmakar S (2018) Nanosensors and nanobiosensors in food and agriculture. Environ Chem Lett 16:161
Srivastava S, Usmani Z, Atanasov AG, Singh VK, Singh NP, Abdel-Azeem AM, Prasad R, Gupta
G, Sharma M, Bhargava A (2021) Biological nanofactories: using living forms for metal
nanoparticle synthesis. Mini-Rev Med Chem 21(2):245–265. https://doi.org/10.2174/
1389557520999201116163012
Su MY, Hong FS, Liu C, Wu X, Liu XQ, Chen L, Gao FQ, Yang F, Li Z (2007) Effects of nanoanatase TiO 2 on absorption, distribution of light, and photoreduction activities of chloroplast
membrane of spinach. Biol Trace Elem Res 131:101–101
Su C, Puls RW, Krug TA, Watling MT, O’Hara SK, Quinn JW, Ruiz NE (2012) A two and halfyear-performance evaluation of a field test on treatment of source zone tetrachloroethene and its
chlorinated daughter products using emulsified zero valent iron nanoparticles. Water Res
46:5071–5084
Syu YY, Hung JH, Chen JC, Chuang HW (2014) Impacts of size and shape of silver nanoparticles
on Arabidopsis plant growth and gene expression. Plant Physiol Biochem 83:57–64
Tao F (2012) Synthesis, catalysis, surface chemistry and structure of bimetallic nanocatalysts.
Chem Soc Rev 41:7977–7979
Tarafdar JC, Sharma S, Raliya R (2013) Nanotechnology: interdisciplinary science of applications.
Afr J Biotechnol 12:219–226
Tarafdar JC, Raliya R, Mahawar H, Rathore I (2014) Development of zinc nanofertilizer to enhance
crop production in pearl millet (Pennisetum americanum). Agric Res 3:257–262
Teodoro S, Micaela B, David KW (2010) Novel use of nano-structured alumina as an insecticide.
Pest Manag Sci 66:577–579
Thangadurai D, Sangeetha J, Prasad R (2020a) Functional bionanomaterials. Springer International
Publishing. ISBN 978–3–030-41464-1. https://www.springer.com/gp/book/9783030414634
Thangadurai D, Sangeetha J, Prasad R (2020b) Nanotechnology for food, agriculture, and environment. Springer International Publishing. ISBN 978–3–030-31938-0. https://www.springer.com/
gp/book/9783030319373
Thul ST, Sarangi BK (2015) Implications of nanotechnology on plant productivity and its
rhizospheric environment. In: Nanotechnology and plant sciences. Springer, Cham, pp 37–53
Tolaymat TM, El Badawy AM, Genaidy A, Scheckel KG, Luxton TP, Suidan M (2010) An
evidence-based environmental perspective of manufactured silver nanoparticle in syntheses
and applications: a systematic review and critical appraisal of peer-reviewed scientific papers.
Sci Total Environ 408:999–1006
Tripathi DK, Singh S, Singh S, Srivastava PK, Singh VP, Singh S, Prasad SM, Singh PK, Dubey
NK, Pandey AC, Chauhan DK (2017a) Nitric oxide alleviates silver nanoparticles (AgNPs)induced phytotoxicity in Pisum sativum seedlings. Plant Physiol Biochem 110:167–177
1 Nanotechnology in Agriculture, the Food Sector, and Remediation: Prospects,. . .
31
