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81
121. Choi O, Cleuenger TE, Deng BL, Surampalli RY, Ross L, Hu ZQ (2009) Role of sulfide and
ligand strength in controlling nanosilver toxicity. Water Res 43:1879–1886
122. Nowack B, Ranville JF, Diamond S, Gallego-Urrea JA, Metcalfe C, Rose J, Horne N, Koelmans AA, Klaine SJ (2012) Potential scenarios for nanomaterial release and subsequent
alteration in the environment. Environ Toxicol Chem 31:50–59
123. Hagfeldt A, Gratzel M (1995) Light-induced redox reactions in nanocrystalline systems.
Chem Rev 95:49–68
124. Mills A, Hunte SL (1997) An overview of semiconductor photocatalysis. J Photochem
Photobiol A Chem 108:1–35
125. Brunet L, Lyon DY, Hotze EM, Alvarez PJJ, Wiesner MR (2009) Comparative photoactivity
and antibacterial properties of C 60 fullerenes and titanium dioxide nanoparticles. Environ Sci
Technol 43:4355–4360
126. Auffan M, Pedeutour M, Rose J, Masion A, Ziarelli F, Borschneck D, Chaneac C, Botta C,
Chaurand P, Labille J, Bottero JY (2010) Structural degradation at the surface of a TiO 2 -based
nanomaterial used in cosmetics. Environ Sci Technol 44:2689–2694
127. Carp O (2004) Photoinduced reactivity of titanium dioxide. Prog Solid State Chem 32:33–177
128. Stumm W, Morgan JJ (1995) Aquatic chemistry: chemical equilibria and rates in natural
waters, 3rd edn. Wiley, NewYork, NY, USA
129. Liu JY, Hurt RH (2010) Ion release kinetics and particle persistence in aqueous nano-silver
colloids. Environ Sci Technol 44:2169–2175
130. Borm P (2005) Research strategies for safety evaluation of nanomaterials, part V: role of
dissolution in biological fate and effects of nanoscale particles. Toxicol Sci 90:23–32
131. Costa P, Sousa Lobo JM (2001) Modeling and comparison of dissolution profiles. Eur J Pharm
Sci 13:123–133
132. Miller-Chou BA, Koenig JL (2003) A review of polymer dissolution. Prog Polym Sci 28:1223–
1270
133. Metz KM, Mangham AN, Bierman MJ, Jin S, Hamers RJ, Pedersen JA (2009) Engineered
nanomaterial transformation under oxidative environmental conditions: development of an
in vitro biomimetic assay. Environ Sci Technol 43:1598–1604
134. Fabrega J, Luoma SN, Tyler CR, Galloway TS, Lead JR (2011) Silver nanoparticles: behaviour
and effects in the aquatic environment. Environ Int 37:517–531
135. Buffle J, Wilkinson KJ, Van Leeuwen HP (2009) Chemodynamics and bioavailability in
natural waters. Environ Sci Technol 43:7170–7174
136. Diebold U (2003) The surface science of titanium dioxide. Surf Sci Rep 48:53–229
137. Talapin DV, Yin Y (2001) Themed issue: chemical transformations of nanoparticles. J Mater
Chem 21:11454
138. Dabrowski A (2001) Adsorption: from theory to practice. Adv Coll Interface Sci 93:135–224
139. Pan B, Xing B (2008) Adsorption mechanisms of organic chemicals on carbon nanotubes.
Environ Sci Technol 42:9005–9013
140. Rabe M, Verdes D, Seeger S (2011) Understanding protein adsorption phenomena at solid
surfaces. Adv Coll Interface Sci 162:87–106
141. Saleh NB, Pfefferle LD, Elimelech M (2010) Influence of biomacromolecules and humic
acid on the aggregation kinetics of single-walled carbon nanotubes. Environ Sci Technol
44:2412–2418
142. Hassellov M, Readman JW, Ranville JF, Tiede K (2008) Nanoparticle analysis and characterization methodologies in environmental risk assessment of engineered nanoparticles.
Ecotoxicology 17:344–361
143. Mueller NC, Nowack B (2010) Nanoparticles for remediation—solving big problems with
little particles. Elements 6:395–400
144. Parida SK, Dash S, Patel S, Mishra BK (2006) Adsorption of organic molecules on silica
surface. Adv Coll Interface Sci 121:77–110
145. Walser T, Demou E, Lang DJ, Hellweg S (2011) Prospective environmental life cycle
assessment of nanosilver T-shirts. Environ Sci Technol 45:4570–4578
81
121. Choi O, Cleuenger TE, Deng BL, Surampalli RY, Ross L, Hu ZQ (2009) Role of sulfide and
ligand strength in controlling nanosilver toxicity. Water Res 43:1879–1886
122. Nowack B, Ranville JF, Diamond S, Gallego-Urrea JA, Metcalfe C, Rose J, Horne N, Koelmans AA, Klaine SJ (2012) Potential scenarios for nanomaterial release and subsequent
alteration in the environment. Environ Toxicol Chem 31:50–59
123. Hagfeldt A, Gratzel M (1995) Light-induced redox reactions in nanocrystalline systems.
Chem Rev 95:49–68
124. Mills A, Hunte SL (1997) An overview of semiconductor photocatalysis. J Photochem
Photobiol A Chem 108:1–35
125. Brunet L, Lyon DY, Hotze EM, Alvarez PJJ, Wiesner MR (2009) Comparative photoactivity
and antibacterial properties of C 60 fullerenes and titanium dioxide nanoparticles. Environ Sci
Technol 43:4355–4360
126. Auffan M, Pedeutour M, Rose J, Masion A, Ziarelli F, Borschneck D, Chaneac C, Botta C,
Chaurand P, Labille J, Bottero JY (2010) Structural degradation at the surface of a TiO 2 -based
nanomaterial used in cosmetics. Environ Sci Technol 44:2689–2694
127. Carp O (2004) Photoinduced reactivity of titanium dioxide. Prog Solid State Chem 32:33–177
128. Stumm W, Morgan JJ (1995) Aquatic chemistry: chemical equilibria and rates in natural
waters, 3rd edn. Wiley, NewYork, NY, USA
129. Liu JY, Hurt RH (2010) Ion release kinetics and particle persistence in aqueous nano-silver
colloids. Environ Sci Technol 44:2169–2175
130. Borm P (2005) Research strategies for safety evaluation of nanomaterials, part V: role of
dissolution in biological fate and effects of nanoscale particles. Toxicol Sci 90:23–32
131. Costa P, Sousa Lobo JM (2001) Modeling and comparison of dissolution profiles. Eur J Pharm
Sci 13:123–133
132. Miller-Chou BA, Koenig JL (2003) A review of polymer dissolution. Prog Polym Sci 28:1223–
1270
133. Metz KM, Mangham AN, Bierman MJ, Jin S, Hamers RJ, Pedersen JA (2009) Engineered
nanomaterial transformation under oxidative environmental conditions: development of an
in vitro biomimetic assay. Environ Sci Technol 43:1598–1604
134. Fabrega J, Luoma SN, Tyler CR, Galloway TS, Lead JR (2011) Silver nanoparticles: behaviour
and effects in the aquatic environment. Environ Int 37:517–531
135. Buffle J, Wilkinson KJ, Van Leeuwen HP (2009) Chemodynamics and bioavailability in
natural waters. Environ Sci Technol 43:7170–7174
136. Diebold U (2003) The surface science of titanium dioxide. Surf Sci Rep 48:53–229
137. Talapin DV, Yin Y (2001) Themed issue: chemical transformations of nanoparticles. J Mater
Chem 21:11454
138. Dabrowski A (2001) Adsorption: from theory to practice. Adv Coll Interface Sci 93:135–224
139. Pan B, Xing B (2008) Adsorption mechanisms of organic chemicals on carbon nanotubes.
Environ Sci Technol 42:9005–9013
140. Rabe M, Verdes D, Seeger S (2011) Understanding protein adsorption phenomena at solid
surfaces. Adv Coll Interface Sci 162:87–106
141. Saleh NB, Pfefferle LD, Elimelech M (2010) Influence of biomacromolecules and humic
acid on the aggregation kinetics of single-walled carbon nanotubes. Environ Sci Technol
44:2412–2418
142. Hassellov M, Readman JW, Ranville JF, Tiede K (2008) Nanoparticle analysis and characterization methodologies in environmental risk assessment of engineered nanoparticles.
Ecotoxicology 17:344–361
143. Mueller NC, Nowack B (2010) Nanoparticles for remediation—solving big problems with
little particles. Elements 6:395–400
144. Parida SK, Dash S, Patel S, Mishra BK (2006) Adsorption of organic molecules on silica
surface. Adv Coll Interface Sci 121:77–110
145. Walser T, Demou E, Lang DJ, Hellweg S (2011) Prospective environmental life cycle
assessment of nanosilver T-shirts. Environ Sci Technol 45:4570–4578
