Kaur A, Gupta U (2010a) Solid-phase extraction of antimony using chemically modified SiO 2 -PAN
nanoparticles. J AOAC Int 93:1302–1307
Kaur A, Gupta U (2010b) Preconcentration of heavy metals using chemically modified submicron
nanoparticles. Sep Sci 2:11–16
Kaur A, Gupta U (2010c) Solid phase extraction of cd(II) using mesoporous organosilics
nanoparticles modified with resacetophenone. EJEAFChe 9:1334–1342
Kaur A, Gupta U (2015) Preparation of silica-PAN functionalized nanoextractants for the extraction
of ferbam from various samples. Sep Sci Technol 50:661–669
Kim TH, Lee J, Hong S (2009) Highly selective environmental nanosensors based on anomalous
response of carbon nanotube conductance to mercury ions. J Phys Chem C 113:19393–19396
Kobayashi K, Kitagawa S, Ohtani H (2006) Development of capillary column packed with thiolmodified gold-coated polystyrene particles and its selectivity for aromatic compounds. J
Chromatogr A 1110:95–101
Kong J, Franklin NR, Zhou C, Chapline MG, Peng S, Cho K, Dai H (2000) Nanotube molecular
wires as chemical sensors. Science 287:622–625
L’vovich MI (1979) World water resources and their future. American Geophysical Union,
Washington, DC
Laurent S, Forge D, Port M, Roch A, Robic C, Vander Elst L, Muller RN (2008) Magnetic iron
oxide nanoparticles: synthesis, stabilization, vectorization, physicochemical characterizations,
and biological applications. Chem Rev 108:2064–2110
Lee JS, Han M, Mirkin CA (2007) Colorimetric detection of mercuric ion (Hg
2+ ) in aqueous media
using DNA-functionalized gold nanoparticles. Angew Chem 119:4171–4174
Lee JH, Wang Z, Liu J, Lu Y (2008) Highly sensitive and selective colorimetric sensors for uranyl
(UO 2
2+ ): development and comparison of labeled and label-free DNAzyme-gold nanoparticle
systems. J Am Chem Soc 130:14217–14226
Leonard P, Hearty S, Brennan J et al (2003) Advances in biosensors for detection of pathogens in
food and water. Enzyme Microb Technol 32:3–13
Li J, Huang Y, Ding Y, Yang Z, Li S, Zhou X, Fan F, Zhang W, Zhou Z, Wu D, Ren B, Wang Z,
Tian Z (2010a) Shell-isolated nanoparticle-enhanced Raman spectroscopy. Nature 464:392–395
Li D, Li D, Fossey JS, Long Y (2010b) Portable surface-enhanced Raman scattering sensor for
rapid detection of aniline and phenol derivatives by on-site electrostatic preconcentration. Anal
Chem 82:9299–9305
Li JR, Ma Y, McCarthy MC, Sculley J, Yu J, Jeong HK, Balbuena PB, Zhou HC (2011) Carbon
dioxide capture-related gas adsorption and separation in metal-organic frameworks. Coord
Chem Rev 255:1791–1823
Li JR, Sculley J, Zhou HC (2012) Metal–organic frameworks for separations. Chem Rev
112:869–932
Liang P, Qin Y, Hu B, Peng T (2001a) Nanometer size titanium dioxide microcolumn on-line
preconcentration of trace metals and their determination by inductively coupled plasma atomic
emission spectrometry in water. Anal Chim Acta 440:207–213
Liang P, Hu B, Jiang Z, Qin Y, Peng T (2001b) Nanometer-sized, titanium dioxide micro-column
on-line preconcentration of La, Y, Yb, Eu, Dy and their determination by inductively coupled
plasma atomic emission spectrometry. J Anal At Spectrom 16:863–866
Liu FK (2008) Metal oxide nanostructures and their gas sensing properties: a review. J Chin Chem
Soc 69:927–933
Liu G, Lin Y (2005) Electrochemical sensor for organophosphate pesticides and nerve agents using
zirconia nanoparticles as selective sorbents. Anal Chem 77:5894–5901
Liu J, Lu Y (2003) A colorimetric lead biosensor using DNAzyme-directed assembly of gold
nanoparticles. J Am Chem Soc 125:6642–6643
Liu J, Lu Y (2004) Accelerated color change of gold nanoparticles assembled by DNAzymes for
simple and fast colorimetric Pb
2+ detection. J Am Chem Soc 126:12298–12305
86
A. Kaur
nanoparticles. J AOAC Int 93:1302–1307
Kaur A, Gupta U (2010b) Preconcentration of heavy metals using chemically modified submicron
nanoparticles. Sep Sci 2:11–16
Kaur A, Gupta U (2010c) Solid phase extraction of cd(II) using mesoporous organosilics
nanoparticles modified with resacetophenone. EJEAFChe 9:1334–1342
Kaur A, Gupta U (2015) Preparation of silica-PAN functionalized nanoextractants for the extraction
of ferbam from various samples. Sep Sci Technol 50:661–669
Kim TH, Lee J, Hong S (2009) Highly selective environmental nanosensors based on anomalous
response of carbon nanotube conductance to mercury ions. J Phys Chem C 113:19393–19396
Kobayashi K, Kitagawa S, Ohtani H (2006) Development of capillary column packed with thiolmodified gold-coated polystyrene particles and its selectivity for aromatic compounds. J
Chromatogr A 1110:95–101
Kong J, Franklin NR, Zhou C, Chapline MG, Peng S, Cho K, Dai H (2000) Nanotube molecular
wires as chemical sensors. Science 287:622–625
L’vovich MI (1979) World water resources and their future. American Geophysical Union,
Washington, DC
Laurent S, Forge D, Port M, Roch A, Robic C, Vander Elst L, Muller RN (2008) Magnetic iron
oxide nanoparticles: synthesis, stabilization, vectorization, physicochemical characterizations,
and biological applications. Chem Rev 108:2064–2110
Lee JS, Han M, Mirkin CA (2007) Colorimetric detection of mercuric ion (Hg
2+ ) in aqueous media
using DNA-functionalized gold nanoparticles. Angew Chem 119:4171–4174
Lee JH, Wang Z, Liu J, Lu Y (2008) Highly sensitive and selective colorimetric sensors for uranyl
(UO 2
2+ ): development and comparison of labeled and label-free DNAzyme-gold nanoparticle
systems. J Am Chem Soc 130:14217–14226
Leonard P, Hearty S, Brennan J et al (2003) Advances in biosensors for detection of pathogens in
food and water. Enzyme Microb Technol 32:3–13
Li J, Huang Y, Ding Y, Yang Z, Li S, Zhou X, Fan F, Zhang W, Zhou Z, Wu D, Ren B, Wang Z,
Tian Z (2010a) Shell-isolated nanoparticle-enhanced Raman spectroscopy. Nature 464:392–395
Li D, Li D, Fossey JS, Long Y (2010b) Portable surface-enhanced Raman scattering sensor for
rapid detection of aniline and phenol derivatives by on-site electrostatic preconcentration. Anal
Chem 82:9299–9305
Li JR, Ma Y, McCarthy MC, Sculley J, Yu J, Jeong HK, Balbuena PB, Zhou HC (2011) Carbon
dioxide capture-related gas adsorption and separation in metal-organic frameworks. Coord
Chem Rev 255:1791–1823
Li JR, Sculley J, Zhou HC (2012) Metal–organic frameworks for separations. Chem Rev
112:869–932
Liang P, Qin Y, Hu B, Peng T (2001a) Nanometer size titanium dioxide microcolumn on-line
preconcentration of trace metals and their determination by inductively coupled plasma atomic
emission spectrometry in water. Anal Chim Acta 440:207–213
Liang P, Hu B, Jiang Z, Qin Y, Peng T (2001b) Nanometer-sized, titanium dioxide micro-column
on-line preconcentration of La, Y, Yb, Eu, Dy and their determination by inductively coupled
plasma atomic emission spectrometry. J Anal At Spectrom 16:863–866
Liu FK (2008) Metal oxide nanostructures and their gas sensing properties: a review. J Chin Chem
Soc 69:927–933
Liu G, Lin Y (2005) Electrochemical sensor for organophosphate pesticides and nerve agents using
zirconia nanoparticles as selective sorbents. Anal Chem 77:5894–5901
Liu J, Lu Y (2003) A colorimetric lead biosensor using DNAzyme-directed assembly of gold
nanoparticles. J Am Chem Soc 125:6642–6643
Liu J, Lu Y (2004) Accelerated color change of gold nanoparticles assembled by DNAzymes for
simple and fast colorimetric Pb
2+ detection. J Am Chem Soc 126:12298–12305
86
A. Kaur
