Auffan M, Rose J, Orsiere T, Meo MD, Bottero JY (2017a) CeO 2 nanoparticles induce DNA
damage towards human dermal fibroblasts in vitro. Nanotoxicology 3(2):161–115
Auffan M, Tella M, Liu W, Pariat A, Cabie M, Borschneck D et al (2017b) Structural and physicalchemical behavior of a CeO 2 nanoparticle based diesel additive during combustion and environmental release. Environ Sci Nano 4(10):1974–1980
Azimi G, Dhiman R, Kwon HM, Paxson AT, Varanasi KK (2013) Hydrophobicity of rare-earth
oxide ceramics. Nat Mater 12(4):315–320
Babu S, Thanneru R, Inerbaev T, Day R, Masunov AE, Schulte A, Seal S (2009) Dopant-mediated
oxygen vacancy tuning in ceria nanoparticles. Nanotechnology 20:085713
Barkam S, Das S, Saraf S, Mccormack R, Richardson D, Atencio L, Moosavifazel V, Seal S (2015)
The change in antioxidant properties of dextran-coated redox active nanoparticles due to
synergetic photoreduction-oxidation. Chem Eur J 21(36):12646–12656
Barton LE, Auffan M, Bertrand M, Barakat M, Santaella C, Masion A, Borschneck D, Olivi L,
Roche N, Wiesner MR, Botteros JY (2014) Transformation of pristine and citrate-functionalized
CeO 2 nanoparticles in a laboratory-scale activated sludge reactor. Environ Sci Technol 48
(13):7289–7296
Barton LE, Auffan M, Olivi L, Bottero J, Wiesner MR (2015) Heteroaggregation, transformation
and fate of CeO 2 nanoparticles in wastewater treatment. Environ Pollut 203:122–129
Batley GE, Kirby JK, Mclaughlin MJ (2013) Fate and risks of nanomaterials in aquatic and
terrestrial environments. Acc Chem Res 46(3):854–862
Bayülken S, Saraç AS (1996) Distribution of Ce (IV) species in HNO 3 -HCIO 4 media and determination of stability constants of the nitrato complexes. Turk J Chem 20(2):111–117
Bianchini A, Bowles KC, Brauner CJ, Gorsuch JW, Kramer JR, Wood CM (2010) Evaluation of the
effect of reactive sulfide on the acute toxicity of silver (I) to Daphnia magna. Part 2: toxicity
results. Environ Toxicol Chem 21(6):1294–1300
Birbaum K, Brogioli R, Schellenberg M, Martinoia E, Stark WJ, Günther D et al (2010) No
evidence for cerium dioxide nanoparticle translocation in maize plants. Environ Sci Technol
44(22):8718–8723
Booth A, Størseth T, Altin D, Fornara A, Ahniyaz A, Jungnickel H et al (2015) Freshwater
dispersion stability of PAA-stabilised cerium oxide nanoparticles and toxicity towards
Pseudokirchneriella subcapitata. Sci Total Environ 505:596–605
Brookins DG (1983) Eh-pH diagrams for the rare earth elements at 25.DEG.C and one bar pressure.
Geochem J 17(5):223–229
Brunet L, Lyon DY, Hotze EM, Alvarez PJJ, Wiesner MR (2009) Comparative photoactivity and
antibacterial properties of C60 fullerenes and titanium dioxide nanoparticles. Environ Sci
Technol 43(12):4355–4360
Brunner TJ, Wick P, Manser P, Spohn P, Grass RN, Limbach LK, Bruinink A, Stark WJ (2006) In
vitro cytotoxicity of oxide nanoparticles: comparison to asbestos, silica, and the effect of particle
solubility. Environ Sci Technol 40(14):4374–4381
Cassee FR, Balen ECV, Singh C, Green D, Muijser H, Weinstein J et al (2011) Exposure, health and
ecological effects review of engineered nanoscale cerium and cerium oxide associated with its
use as a fuel additive. Crit Rev Toxicol 41(3):213–229
Celardo I, Nicola MD, Mandoli C, Pedersen JZ, Traversa E, Ghibelli L (2011) Ce
3+ ions determine
redox-dependent anti-apoptotic effect of cerium oxide nanoparticles. ACS Nano 5
(6):4537–4549
Channei D, Phanichphant S, Nakaruk A, Mofarah S, Koshy P, Sorrell C (2017) Aqueous and
surface chemistries of photocatalytic Fe-doped CeO 2 nanoparticles. Catalysts 7(2):45
Chaudhury K, Babu NK, Das S, Kumar A, Seal S (2013) Mitigation of endometriosis using
regenerative cerium oxide nanoparticles. Nanomedicine 9:439–448
Chen BH, Stephen Inbaraj B (2018) Various physicochemical and surface properties controlling the
bioactivity of cerium oxide nanoparticles. Crit Rev Biotechnol 7(38):1003–1024
Cimini A, D'Angelo B, Das S, Gentile R, Seal S (2012) Antibody-conjugated pegylated cerium
oxide nanoparticles for specific targeting of aβ aggregates modulate neuronal survival pathways.
Acta Biomater 8(6):2056–2067
198
G. You et al.
damage towards human dermal fibroblasts in vitro. Nanotoxicology 3(2):161–115
Auffan M, Tella M, Liu W, Pariat A, Cabie M, Borschneck D et al (2017b) Structural and physicalchemical behavior of a CeO 2 nanoparticle based diesel additive during combustion and environmental release. Environ Sci Nano 4(10):1974–1980
Azimi G, Dhiman R, Kwon HM, Paxson AT, Varanasi KK (2013) Hydrophobicity of rare-earth
oxide ceramics. Nat Mater 12(4):315–320
Babu S, Thanneru R, Inerbaev T, Day R, Masunov AE, Schulte A, Seal S (2009) Dopant-mediated
oxygen vacancy tuning in ceria nanoparticles. Nanotechnology 20:085713
Barkam S, Das S, Saraf S, Mccormack R, Richardson D, Atencio L, Moosavifazel V, Seal S (2015)
The change in antioxidant properties of dextran-coated redox active nanoparticles due to
synergetic photoreduction-oxidation. Chem Eur J 21(36):12646–12656
Barton LE, Auffan M, Bertrand M, Barakat M, Santaella C, Masion A, Borschneck D, Olivi L,
Roche N, Wiesner MR, Botteros JY (2014) Transformation of pristine and citrate-functionalized
CeO 2 nanoparticles in a laboratory-scale activated sludge reactor. Environ Sci Technol 48
(13):7289–7296
Barton LE, Auffan M, Olivi L, Bottero J, Wiesner MR (2015) Heteroaggregation, transformation
and fate of CeO 2 nanoparticles in wastewater treatment. Environ Pollut 203:122–129
Batley GE, Kirby JK, Mclaughlin MJ (2013) Fate and risks of nanomaterials in aquatic and
terrestrial environments. Acc Chem Res 46(3):854–862
Bayülken S, Saraç AS (1996) Distribution of Ce (IV) species in HNO 3 -HCIO 4 media and determination of stability constants of the nitrato complexes. Turk J Chem 20(2):111–117
Bianchini A, Bowles KC, Brauner CJ, Gorsuch JW, Kramer JR, Wood CM (2010) Evaluation of the
effect of reactive sulfide on the acute toxicity of silver (I) to Daphnia magna. Part 2: toxicity
results. Environ Toxicol Chem 21(6):1294–1300
Birbaum K, Brogioli R, Schellenberg M, Martinoia E, Stark WJ, Günther D et al (2010) No
evidence for cerium dioxide nanoparticle translocation in maize plants. Environ Sci Technol
44(22):8718–8723
Booth A, Størseth T, Altin D, Fornara A, Ahniyaz A, Jungnickel H et al (2015) Freshwater
dispersion stability of PAA-stabilised cerium oxide nanoparticles and toxicity towards
Pseudokirchneriella subcapitata. Sci Total Environ 505:596–605
Brookins DG (1983) Eh-pH diagrams for the rare earth elements at 25.DEG.C and one bar pressure.
Geochem J 17(5):223–229
Brunet L, Lyon DY, Hotze EM, Alvarez PJJ, Wiesner MR (2009) Comparative photoactivity and
antibacterial properties of C60 fullerenes and titanium dioxide nanoparticles. Environ Sci
Technol 43(12):4355–4360
Brunner TJ, Wick P, Manser P, Spohn P, Grass RN, Limbach LK, Bruinink A, Stark WJ (2006) In
vitro cytotoxicity of oxide nanoparticles: comparison to asbestos, silica, and the effect of particle
solubility. Environ Sci Technol 40(14):4374–4381
Cassee FR, Balen ECV, Singh C, Green D, Muijser H, Weinstein J et al (2011) Exposure, health and
ecological effects review of engineered nanoscale cerium and cerium oxide associated with its
use as a fuel additive. Crit Rev Toxicol 41(3):213–229
Celardo I, Nicola MD, Mandoli C, Pedersen JZ, Traversa E, Ghibelli L (2011) Ce
3+ ions determine
redox-dependent anti-apoptotic effect of cerium oxide nanoparticles. ACS Nano 5
(6):4537–4549
Channei D, Phanichphant S, Nakaruk A, Mofarah S, Koshy P, Sorrell C (2017) Aqueous and
surface chemistries of photocatalytic Fe-doped CeO 2 nanoparticles. Catalysts 7(2):45
Chaudhury K, Babu NK, Das S, Kumar A, Seal S (2013) Mitigation of endometriosis using
regenerative cerium oxide nanoparticles. Nanomedicine 9:439–448
Chen BH, Stephen Inbaraj B (2018) Various physicochemical and surface properties controlling the
bioactivity of cerium oxide nanoparticles. Crit Rev Biotechnol 7(38):1003–1024
Cimini A, D'Angelo B, Das S, Gentile R, Seal S (2012) Antibody-conjugated pegylated cerium
oxide nanoparticles for specific targeting of aβ aggregates modulate neuronal survival pathways.
Acta Biomater 8(6):2056–2067
198
G. You et al.
