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environment: influence of pH, electrolytes and natural organic matter. Nanomaterials 7:326.
https://doi.org/10.3390/nano7100326
Peyghambarzadeh SM, Hashemabadi SH, Jamnani MS, Hoseini SM (2011) Improving the cooling
performance of automobile radiator with Al2O3/water nanofluid. Appl Therm Eng
31:1833–1838. https://doi.org/10.1016/j.applthermaleng.2011.02.029
Pourgolmohammad B, Masoudpanah SM, Aboutalebi MR (2017) Effects of the fuel type and fuel
content on the specific surface area and magnetic properties of solution combusted CoFe 2 O 4
nanoparticles. Ceram Int 43:8262–8268. https://doi.org/10.1016/j.ceramint.2017.03.158
Qafoku NP (2010) Terrestrial nanoparticles and their controls on soil-/geo-processes and reactions,
pp 33–91
Qafoku NP (2010b) In: Sparks D (ed) Advances in agronomy, vol 131. Elsevier, Amsterdam, pp
111–172
Qin XY, Kim JG, Lee JS (1999) Synthesis and magnetic properties of nanostructured γ-Ni-Fe
alloys. Nanostruct Mater 11:259–270. https://doi.org/10.1016/S0965-9773(99)00040-9
Rifai A, Abu-Dheir N, Khaled M et al (2017) Characteristics of oil impregnated hydrophobic glass
surfaces in relation to self-cleaning of environmental dust particles. Sol Energy Mater Sol Cells
171:8–15. https://doi.org/10.1016/j.solmat.2017.06.017
Rollins K (2009) Nanobiotechnology regulation: a proposal for self-regulation with limited oversight. Nanotech L Bus 6:221
Roy M, Pauschitz A, Polak R, Franek F (2006) Comparative evaluation of ambient temperature
friction behaviour of thermal sprayed Cr 3 C 2 –25(Ni20Cr) coatings with conventional and nanocrystalline grains. Tribol Int 39:29–38. https://doi.org/10.1016/j.triboint.2004.11.009
Royal S (2004) Nanoscience and nanotechnologies. Royal Society, London. http://www.nanotec.
org.uk/finalReport.htm
Saurav (2012) Applications of nanotechnology in building materials. Int J Eng Res Appl 2
(5):1077–1082. ISSN: 2248-9622
Sayes CM, Reed KL, Warheit DB (2007) Assessing toxicity of fine and nanoparticles: comparing
in vitro measurements to in vivo pulmonary toxicity profiles. Toxicol Sci 97:163–180. https://
doi.org/10.1093/toxsci/kfm018
Sayle TXT, Maphanga RR, Ngoepe PE, Sayle DC (2009) Predicting the electrochemical properties
of MnO 2 nanomaterials used in rechargeable Li batteries: simulating nanostructure at the
atomistic level. J Am Chem Soc 131:6161–6173. https://doi.org/10.1021/ja8082335
Seshan K (2002) Handbook of thin film deposition techniques principles, methods, equipment and
applications, 2nd edn. CRC, Boca Raton, FL
Shen W, Tang J, Wang Y et al (2017) Strong enhancement of photoelectric conversion efficiency of
co-hybridized polymer solar cell by silver nanoplates and core–shell nanoparticles. ACS Appl
Mater Interfaces 9:5358–5365. https://doi.org/10.1021/acsami.6b13671
Shi W, Zeng H, Sahoo Y et al (2006) A general approach to binary and ternary hybrid Nanocrystals.
Nano Lett 6:875–881. https://doi.org/10.1021/nl0600833
Shrivastava S, Bera T, Roy A et al (2007) Characterization of enhanced antibacterial effects of
novel silver nanoparticles. Nanotechnology 18:225103. https://doi.org/10.1088/0957-4484/18/
22/225103
Shukla VN, Jayaganthan R, Tewari VK (2015) Degradation behavior of HVOF-sprayed Cr 3 C 2 -
25%NiCr cermet coatings exposed to high temperature environment. Mater Today Proc
2:1805–1813. https://doi.org/10.1016/j.matpr.2015.07.048
Smita S, Gupta SK, Bartonova A et al (2012) Nanoparticles in the environment: assessment using
the causal diagram approach. Environ Health 11:S13. https://doi.org/10.1186/1476-069X-11S1-S13
Stone V, Kinloch I, Clift M, Fernandes T, Ford A, Christofi N, Griffiths A, Donaldson K (2006)
Nanoparticle toxicology and ecotoxicology: the role of oxidative stress. In: Nanotoxicology:
interactions of nanomaterials with biological systems. American Scientific Publishers, Valencia,
CA
44
V. Dogra et al.
environment: influence of pH, electrolytes and natural organic matter. Nanomaterials 7:326.
https://doi.org/10.3390/nano7100326
Peyghambarzadeh SM, Hashemabadi SH, Jamnani MS, Hoseini SM (2011) Improving the cooling
performance of automobile radiator with Al2O3/water nanofluid. Appl Therm Eng
31:1833–1838. https://doi.org/10.1016/j.applthermaleng.2011.02.029
Pourgolmohammad B, Masoudpanah SM, Aboutalebi MR (2017) Effects of the fuel type and fuel
content on the specific surface area and magnetic properties of solution combusted CoFe 2 O 4
nanoparticles. Ceram Int 43:8262–8268. https://doi.org/10.1016/j.ceramint.2017.03.158
Qafoku NP (2010) Terrestrial nanoparticles and their controls on soil-/geo-processes and reactions,
pp 33–91
Qafoku NP (2010b) In: Sparks D (ed) Advances in agronomy, vol 131. Elsevier, Amsterdam, pp
111–172
Qin XY, Kim JG, Lee JS (1999) Synthesis and magnetic properties of nanostructured γ-Ni-Fe
alloys. Nanostruct Mater 11:259–270. https://doi.org/10.1016/S0965-9773(99)00040-9
Rifai A, Abu-Dheir N, Khaled M et al (2017) Characteristics of oil impregnated hydrophobic glass
surfaces in relation to self-cleaning of environmental dust particles. Sol Energy Mater Sol Cells
171:8–15. https://doi.org/10.1016/j.solmat.2017.06.017
Rollins K (2009) Nanobiotechnology regulation: a proposal for self-regulation with limited oversight. Nanotech L Bus 6:221
Roy M, Pauschitz A, Polak R, Franek F (2006) Comparative evaluation of ambient temperature
friction behaviour of thermal sprayed Cr 3 C 2 –25(Ni20Cr) coatings with conventional and nanocrystalline grains. Tribol Int 39:29–38. https://doi.org/10.1016/j.triboint.2004.11.009
Royal S (2004) Nanoscience and nanotechnologies. Royal Society, London. http://www.nanotec.
org.uk/finalReport.htm
Saurav (2012) Applications of nanotechnology in building materials. Int J Eng Res Appl 2
(5):1077–1082. ISSN: 2248-9622
Sayes CM, Reed KL, Warheit DB (2007) Assessing toxicity of fine and nanoparticles: comparing
in vitro measurements to in vivo pulmonary toxicity profiles. Toxicol Sci 97:163–180. https://
doi.org/10.1093/toxsci/kfm018
Sayle TXT, Maphanga RR, Ngoepe PE, Sayle DC (2009) Predicting the electrochemical properties
of MnO 2 nanomaterials used in rechargeable Li batteries: simulating nanostructure at the
atomistic level. J Am Chem Soc 131:6161–6173. https://doi.org/10.1021/ja8082335
Seshan K (2002) Handbook of thin film deposition techniques principles, methods, equipment and
applications, 2nd edn. CRC, Boca Raton, FL
Shen W, Tang J, Wang Y et al (2017) Strong enhancement of photoelectric conversion efficiency of
co-hybridized polymer solar cell by silver nanoplates and core–shell nanoparticles. ACS Appl
Mater Interfaces 9:5358–5365. https://doi.org/10.1021/acsami.6b13671
Shi W, Zeng H, Sahoo Y et al (2006) A general approach to binary and ternary hybrid Nanocrystals.
Nano Lett 6:875–881. https://doi.org/10.1021/nl0600833
Shrivastava S, Bera T, Roy A et al (2007) Characterization of enhanced antibacterial effects of
novel silver nanoparticles. Nanotechnology 18:225103. https://doi.org/10.1088/0957-4484/18/
22/225103
Shukla VN, Jayaganthan R, Tewari VK (2015) Degradation behavior of HVOF-sprayed Cr 3 C 2 -
25%NiCr cermet coatings exposed to high temperature environment. Mater Today Proc
2:1805–1813. https://doi.org/10.1016/j.matpr.2015.07.048
Smita S, Gupta SK, Bartonova A et al (2012) Nanoparticles in the environment: assessment using
the causal diagram approach. Environ Health 11:S13. https://doi.org/10.1186/1476-069X-11S1-S13
Stone V, Kinloch I, Clift M, Fernandes T, Ford A, Christofi N, Griffiths A, Donaldson K (2006)
Nanoparticle toxicology and ecotoxicology: the role of oxidative stress. In: Nanotoxicology:
interactions of nanomaterials with biological systems. American Scientific Publishers, Valencia,
CA
44
V. Dogra et al.
