Miao L, Wang P, Wang C, Hou J, Yao Y, Liu J et al (2017) Effect of TiO 2 and CeO 2 nanoparticles
on the metabolic activity of surficial sediment microbial communities based on oxygen microelectrodes and high-throughput sequencing. Water Res 129:287–296
Milani S, Bombelli FB, Pitek AS, Dawson KA, Rädler J (2012) Reversible versus irreversible
binding of transferrin to polystyrene nanoparticles: soft and hard corona. ACS Nano 6
(3):2532–2541
Milani ZM, Charbgoo F, Darroudi M (2017) Impact of physicochemical properties of cerium oxide
nanoparticles on their toxicity effects. Ceram Int 43(17):14572–14581
Montini T, Melchionna M, Monai M, Fornasiero P (2016) Fundamentals and catalytic applications
of CeO 2 -based materials. Chem Rev 116(10):5987–6041
Nedel S, Dideriksen K, Christiansen BC, Bovet N, Stipp SLS (2010) Uptake and release of cerium
during Fe-oxide formation and transformation in Fe(II) solutions. Environ Sci Technol 44
(12):4493–4498
Nel A, Xia T, Mädler L, Li N (2006) Toxic potential of materials at the nanolevel. Science 311
(5761):622–627
Nel AE, Mädler L, Velegol D, Xia T, Hoek EM, Somasundaran P et al (2009) Understanding
biophysicochemical interactions at the nano-bio interface. Nat Mater 8(7):543–557
Newton TW, Arcand GM (2002) A spectrophotometric study of the complex formed between
Cerous and sulfate ions1. J Am Chem Soc 75(10):885–896
Ould-Moussa N, Safi M, Guedeau-Boudeville MA, Montero D, Conjeaud H, Berret JF (2014) In
vitro toxicity of nanoceria: effect of coating and stability in biofluids. Nanotoxicology 8
(7):799–811
Park B, Donaldson K, Duffin R, Tran L, Kelly F, Mudway I, Morin JP, Guest R, Jenkinson P,
Samaras Z, Giannouli M, Kouridis H, Martin P (2008a) Hazard and risk assessment of a
nanoparticulate cerium oxide-based diesel fuel additive-a case study. Inhal Toxicol 20
(6):547–566
Park EJ, Choi J, Park YK, Park K (2008b) Oxidative stress induced by cerium oxide nanoparticles
in cultured BEAS-2B cells. Toxicology 245(1–2):90–100
Patil S, Seal S, Guo Y, Schulte A, Norwood J (2006) Role of trivalent La and Nd dopants in lattice
distortion and oxygen vacancy generation in cerium oxide nanoparticles. Appl Phys Lett
88:243110
Pelletier DA, Suresh AK, Holton GA, Mckeown CK, Wang W, Gu B et al (2010) Effects of
engineered cerium oxide nanoparticles on bacterial growth and viability. Appl Environ
Microbiol 76(24):7981–7989
Pešić M, Podolskirenić A, Stojković S, Matović B, Zmejkoski D, Kojić V et al (2015) Anti-cancer
effects of cerium oxide nanoparticles and its intracellular redox activity. Chem Biol Interact
232:85–93
Petosa AR, Jaisi DP, Quevedo IR, Elimelech M, Tufenkji N (2010) Aggregation and deposition of
engineered nanomaterials in aquatic environments: role of physicochemical interactions. Environ Sci Technol 44(17):6532–6549
Plakhova TV, Romanchuk AY, Yakunin SN, Dumas T, Demir S, Wang S et al (2016) Solubility of
nanocrystalline cerium dioxide: experimental data and thermodynamic modeling. J Phys Chem
C 120(39):22615–22626
Preda G, Migani A, Neyman KM, Bromley ST, Illas F, Pacchioni G (2011) Formation of
superoxide anions on ceria nanoparticles by interaction of molecular oxygen with Ce. J Phys
Chem C 115(13):5817–5822
Pulidoreyes G, Rodeapalomares I, Das S, Sakthivel TS, Leganes F, Rosal R et al (2015) Untangling
the biological effects of cerium oxide nanoparticles: the role of surface valence states. Sci Rep
5:15613
Rogers NJ, Franklin NM, Apte SC, Batley GE, Angel BM, Lead JR et al (2010) Physico-chemical
behaviour and algal toxicity of nanoparticulate CeO 2 in freshwater. Environ Chem 7(1):50–60
Roh JY, Park YK, Park K, Choi J (2010) Ecotoxicological investigation of CeO 2 and TiO 2
nanoparticles on the soil nematode Caenorhabditis elegans using gene expression, growth,
fertility, and survival as endpoints. Environ Toxicol Phar 29(2):167–172
Surface Properties and Environmental Transformations Controlling the. . .
203
on the metabolic activity of surficial sediment microbial communities based on oxygen microelectrodes and high-throughput sequencing. Water Res 129:287–296
Milani S, Bombelli FB, Pitek AS, Dawson KA, Rädler J (2012) Reversible versus irreversible
binding of transferrin to polystyrene nanoparticles: soft and hard corona. ACS Nano 6
(3):2532–2541
Milani ZM, Charbgoo F, Darroudi M (2017) Impact of physicochemical properties of cerium oxide
nanoparticles on their toxicity effects. Ceram Int 43(17):14572–14581
Montini T, Melchionna M, Monai M, Fornasiero P (2016) Fundamentals and catalytic applications
of CeO 2 -based materials. Chem Rev 116(10):5987–6041
Nedel S, Dideriksen K, Christiansen BC, Bovet N, Stipp SLS (2010) Uptake and release of cerium
during Fe-oxide formation and transformation in Fe(II) solutions. Environ Sci Technol 44
(12):4493–4498
Nel A, Xia T, Mädler L, Li N (2006) Toxic potential of materials at the nanolevel. Science 311
(5761):622–627
Nel AE, Mädler L, Velegol D, Xia T, Hoek EM, Somasundaran P et al (2009) Understanding
biophysicochemical interactions at the nano-bio interface. Nat Mater 8(7):543–557
Newton TW, Arcand GM (2002) A spectrophotometric study of the complex formed between
Cerous and sulfate ions1. J Am Chem Soc 75(10):885–896
Ould-Moussa N, Safi M, Guedeau-Boudeville MA, Montero D, Conjeaud H, Berret JF (2014) In
vitro toxicity of nanoceria: effect of coating and stability in biofluids. Nanotoxicology 8
(7):799–811
Park B, Donaldson K, Duffin R, Tran L, Kelly F, Mudway I, Morin JP, Guest R, Jenkinson P,
Samaras Z, Giannouli M, Kouridis H, Martin P (2008a) Hazard and risk assessment of a
nanoparticulate cerium oxide-based diesel fuel additive-a case study. Inhal Toxicol 20
(6):547–566
Park EJ, Choi J, Park YK, Park K (2008b) Oxidative stress induced by cerium oxide nanoparticles
in cultured BEAS-2B cells. Toxicology 245(1–2):90–100
Patil S, Seal S, Guo Y, Schulte A, Norwood J (2006) Role of trivalent La and Nd dopants in lattice
distortion and oxygen vacancy generation in cerium oxide nanoparticles. Appl Phys Lett
88:243110
Pelletier DA, Suresh AK, Holton GA, Mckeown CK, Wang W, Gu B et al (2010) Effects of
engineered cerium oxide nanoparticles on bacterial growth and viability. Appl Environ
Microbiol 76(24):7981–7989
Pešić M, Podolskirenić A, Stojković S, Matović B, Zmejkoski D, Kojić V et al (2015) Anti-cancer
effects of cerium oxide nanoparticles and its intracellular redox activity. Chem Biol Interact
232:85–93
Petosa AR, Jaisi DP, Quevedo IR, Elimelech M, Tufenkji N (2010) Aggregation and deposition of
engineered nanomaterials in aquatic environments: role of physicochemical interactions. Environ Sci Technol 44(17):6532–6549
Plakhova TV, Romanchuk AY, Yakunin SN, Dumas T, Demir S, Wang S et al (2016) Solubility of
nanocrystalline cerium dioxide: experimental data and thermodynamic modeling. J Phys Chem
C 120(39):22615–22626
Preda G, Migani A, Neyman KM, Bromley ST, Illas F, Pacchioni G (2011) Formation of
superoxide anions on ceria nanoparticles by interaction of molecular oxygen with Ce. J Phys
Chem C 115(13):5817–5822
Pulidoreyes G, Rodeapalomares I, Das S, Sakthivel TS, Leganes F, Rosal R et al (2015) Untangling
the biological effects of cerium oxide nanoparticles: the role of surface valence states. Sci Rep
5:15613
Rogers NJ, Franklin NM, Apte SC, Batley GE, Angel BM, Lead JR et al (2010) Physico-chemical
behaviour and algal toxicity of nanoparticulate CeO 2 in freshwater. Environ Chem 7(1):50–60
Roh JY, Park YK, Park K, Choi J (2010) Ecotoxicological investigation of CeO 2 and TiO 2
nanoparticles on the soil nematode Caenorhabditis elegans using gene expression, growth,
fertility, and survival as endpoints. Environ Toxicol Phar 29(2):167–172
Surface Properties and Environmental Transformations Controlling the. . .
203
