Environmental Engineering Reference
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Barsan , N. , M. Schweizer - Berberich and W. G รถ pel ( 1999 ) Fundamental and practical aspects
in the design of nanoscaled SnO 2 gas sensors: a status report: Fres. J. Anal. Chem. , 365 ,
287 - 304 .
Binnig , G. , H. Rohrer , Ch. Gerber and E. Weibel ( 1982 ) Surface Studies by Scanning
Tunneling Microscopy: Phys. Rev. Lett. , 49 , 57 - 61 .
Binnig , G. , C. F. Quate and C. Gerber ( 1986 ) Atomic Force Microscope : Phys. Rev. Lett. , 56 ,
930 - 3 .
Bogunia - Kubik , K. and M. Sugisaka ( 2002 ) From molecular biology to nanotechnology and
nanomedicine: Biosys. , 65 ( 2 - 3 ), 123 - 38 .
Borm , P. J. A. , et al. (2006a) The potential risks of nanomaterials: a review carried out for
ECETOC : Part. Fibre Toxicol. , 3 , 1 - 35 .
Borm , P. , F. C. Klaessig , T. D. Landry , et al. (2006b) Research Strategies for Safety Evaluation
of Nanomaterials, Part V: Role of Dissolution in Biological Fate and Effects of Nanoscale
Particles: Toxicological Sciences , 90 ( 1 ), 23 - 32 .
Brant , J. , H. Lecaotnet and M. R. Wiessner ( 2005 ) Aggregation and deposition
characteristics of fullerene nanoparticles in aqueous systems: J. Nanoparticle Res. , 7 ,
533 - 45 .
BSI ( 2007 ) Terminology for nanomaterials . PAS 136:2007 , British Standards Institution .
B u f fl e, J. (2006) The key role of environmental colloids/nanoparticles for the sustainablility
of life: Environ. Chem. , 3 , 155 - 8 .
Chen , K. L. and M. Elimelech ( 2006 ) Aggregation and Deposition Kinetics of Fullerene (C 60 )
Nanoparticles: Langmuir , 22 ( 26 ), 10994 - 1001 .
Chen , K. L. and M. Elimelech ( 2007 ) Infl uence of humic acid on the aggregation kinetics of
fullerene (C 60 ) nanoparticles in monovalent and divalent electrolyte solutions: J. Colloid
Interf. Sci. , 309 ( 1 ), 126 - 34 .
Cheng , X. , A. T. Kan and M. B. Tomson ( 2004 ) Naphthalene Adsorption and Desorption
from Aqueous C 60 Fullerene : J. Chemical & Engineering Data , 49 ( 3 ), 675 - 83 .
Cheng , X. , A. T. Kan and M. B. Tomson ( 2005 ) Study of C 60 transport in porous media and
the effect of sorbed C 60 on naphthalene transport: Mat. Res. Soc. , 20 , 3244 - 54 .
Chithrani , B. D. , A. A. Ghazani and W. C. W. Chan ( 2006 ) Determining the Size and Shape
Dependence of Gold Nanoparticle Uptake into Mammalian Cells: Nano Letters , 6 ( 4 ),
662 - 8 .
Choi , O. and Z. Hu ( 2008 ) Size Dependent and Reactive Oxygen Species Related Nano-
silver Toxicity to Nitrifying Bacteria: Environmental Science & Technology , 42 ( 12 ),
4583 - 8 .
Clarke , A. G. , L. A. Robertson , R. S. Hamilton and B. Gorbunov ( 2004 ) A Lagrangian model
of the evolution of the particulate size distribution of vehicular emissions: Sci. Tot. Environ. ,
334- 335 , 197 - 206 .
Cloninger , M. J. ( 2002 ) Biological applications of dendrimers : Cur. Opin. Chem. Biol. , 6 ( 6 ),
742 - 8 .
Cornell , B. , V. BraachMaksvytis , L. King , et al. ( 1997 ) A biosensor that uses ion - channel
switches: Nature. , 387 , 580 - 3 .
Cuenca , A. G. , H. Jiang , S. N. Hochwald , et al. (2006) Emerging implications of nanotechnol-
ogy on cancer diagnostics and therapeutics: Cancer , 107 , 459 - 66 .
Cui , Z. and R. J. Mumper ( 2003 ) Microparticles and nanoparticles as delivery systems for
DNA vaccines: Crit. Rev. Ther. Drug Carrier Syst. , 20 , 103 - 37 .
Daniel , M. C. and D. Astruc ( 2004 ) Gold Nanoparticles: Assembly, Supramolecular Chemistry,
Quantum-Size-Related Properties, and Applications toward Biology, Catalysis, and
Nanotechnology: Chemical Reviews , 104 ( 1 ), 293 - 46 .
Diallo , M. S. , S. Christie , P. Swaminathan , et al. ( 2005 ) Dendrimer Enhanced Ultrafi ltration.
1. Recovery of Cu(II) from Aqueous Solutions Using PAMAM Dendrimers with Ethylene
Diamine Core and Terminal NH 2 Groups : Environmental Science and Technology , 39 ( 5 ),
1366 - 77 .
Donaldson , K. , R. Aitken , L. Tran , et al. (2006) Carbon Nanotubes: A Review of Their
Properties in Relation to Pulmonary Toxicology and Workplace Safety: Toxicological
Sciences , 92 ( 1 ), 5 - 22 .
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