Environmental Engineering Reference
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68. Maltez-da Costa M, de la Escosura-Mu˜ iz A, Nogu´s C, Barrios L, Ib´˜ez E, Merko¸i A
(2012) Detection of circulating cancer cells using electrocatalytic gold nanoparticles. Small
8:3605-3612
69. Li N, Larson T, Nguyen HH, Sokolov KV, Ellington AD (2010) Directed evolution of gold
nanoparticle delivery to cells. Chem Commun 46:392-394
70. Wang L, Bai JY, Huang PF, Wang HJ, Zhang LY, Zhao YQ (2006) Self-assembly of gold
nanoparticles
for
the voltammetric
sensing of
epinephrine. Electrochem Commun
8:1035-1040
71. Kurniawan F, Tsakova V, Mirsky VM (2006) Gold nanoparticles in non-enzymatic electro-
chemical detection of sugars. Electroanalysis 18:1937-1942
72. Li Y, Song YY, Yang C, Xia XH (2007) Hydrogen bubble dynamic template synthesis of
porous gold for nonenzymatic electrochemical detection of glucose. Electrochem Commun
9:981-988
73. Raj CR, Ohsaka TJ (2003) Voltammetric detection of uric acid in the presence of ascorbic acid
at a gold electrode modified with a self-assembled monolayer of heteroaromatic thiol. J
Electroanal Chem 540:69-77
74. Li MG, Gao F, Yang P, Wang L, Fang B (2008) Conveniently assembling dithiocarbamate and
gold nanoparticles onto the gold electrode: a new type of electrochemical sensors for biomol-
ecule detection. Surf Sci 602:151-155
75. Raj CR, Okajima T, Ohsaka TJ (2003) Gold nanoparticle arrays for the voltammetric sensing
of dopamine. J Electroanal Chem 543:127-133
76. Zhang SJ, Xu ML, Zhang YZ (2009) Simultaneous voltammetric detection of salsolinol and
uric acid in the presence of high concentration of ascorbic acid with gold nanoparticles/
functionalized multiwalled carbon nanotubes composite film modified electrode. Electroanal-
ysis 21:2607-2610
77. Hu GZ, Ma YG, Guo Y, Shao SJ (2008) Electrocatalytic oxidation and simultaneous deter-
mination of uric acid and ascorbic acid on the gold nanoparticles-modified glassy carbon
electrode. Electrochim Acta 53:6610-6615
78. Kalimuthu P, John SAJ (2008) Size dependent electrocatalytic activity of gold nanoparticles
immobilized onto three dimensional sol-gel network. J Electroanal Chem 617:164
79. Kannan P, John SA (2009) Determination of nanomolar uric and ascorbic acids using enlarged
gold nanoparticles modified electrode. Anal Biochem 386:65-72
80. Lu LP, Lin XQ (2004) Glassy carbon electrode modified with gold nanoparticles and DNA for
the simultaneous determination of uric acid and norepinephrine under coexistence of ascorbic
acid. Anal Sci 20:527-530
81. Yin HS, Zhou YI, Ai SY, Han RX, Tang TT, Zhu LS (2010) Electrochemical behavior of
bisphenol A at glassy carbon electrode modified with gold nanoparticles, silk fibroin, and
PAMAM dendrimers. Microchim Acta 170:99-105
82. Zhao W, Brook MA, Li YF (2008) Design of gold nanoparticle-based colorimetric biosensing
assays. Chembiochem 9:2363-2371
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