Franke ME, Koplin TJ, Simin U (2006) Metal and metal oxide nanoparticles in chemiresistors: does
the nanoscale matter? Small 2(1):36–50
Fritzsche WN, Taton TA (2003) Metal nanoparticles as labels for heterogeneous, chip-based DNA
detection. Nanotechnology 14(12):R63
Fu AH, Gu WW, Larabell C, Alavistatos AP (2005) Semiconductor nanocrystals for biological
imaging. Curr Opin Neurobiol 15:568–575
Goulart LA, Gonçalves R, Correa AA, Pereira EC (2018) Synergic effect of silver nanoparticles and
carbon nanotubes on the simultaneous voltammetric determination of hydroquinone, catechol,
bisphenol a and phenol. Microchim Acta 185(12):1–9
Govindhan M, Liu Z, Chen A (2016) Design and electrochemical study of platinum-based
nanomaterials for sensitive detection of nitric oxide in biomedical application. Nanomaterials
6:211
Grieshaber D, MacKenzie R, Vörös J, Reimhult E (2008) Electrochemical biosensors—sensor
principles and architectures. Sensors 8:1400–1458
Gui R, An X, Su H, Shen W, Chen Z, Wang X (2012) A near-infrared-emitting CdTe/CdS core/
shell quantum dots-based OFF-ON fluorescence sensor for highly selectiveand sensitive detection of Cd
2+ . Talanta 94:257–262
Gui R, An X, Huang W (2013) An improved method for ratiometric fluorescence detection of pH
and Cd
2+ using fluorescein isothiocyanate-quantum dots conjugates. Anal Chim Acta
767:134–140
Guo J, Zhang Y, Luo Y, Shen F, Sun C (2014) Efficient fluorescence resonance energy transfer
between oppositely charged CdTe quantum dots and gold nanoparticles for turn-on fluorescence
detection of glyphosate. Talanta 125:385–392
Haes AJ, Van Duyne RP (2004) A unified view of propagating and localized surface plasmon
resonance biosensors. Anal Bioanal Chem 379(7–8):920–930
Hansch C, McKarns SC, Smith CJ, Doolittle DJ (2000) Comparative QSAR evidence for a freeradical mechanism of phenol-induced toxicity. Chem Biol Interact 127(1):61–72
Hatchett DW, Josowicz M (2008) Composites of intrinsically conducting polymers as sensing
nanomaterials. Chem Rev 108(2):746–769
Horst C, Silwana B, Iwuoha E, Somerset V (2015) Bismuth-silver bimetallic nanosensor application for the voltammetric analysis of dust and soil samples. J Electroanal Chem 752:1–11
Hu J, Fu K, Bohn PW (2018) Whole-cell pseudomonas aeruginosa localized surface plasmon
resonance aptasensor. Anal Chem 90(3):2326–2332
Huang CC, Chang H-T (2006) Selective gold-nanoparticle based ‘turn-on’ fluorescent sensors for
detection of mercury (II) in aqueous solution. Anal Chem 78(24):8332–8338
Huebra MG, Hernandez P, Nieto O, Ballesteros Y, Hernandez L (2000) Determination of
carbendazimin soil samples by anodic stripping voltammetry using a carbon fiber
ultramicroelectrode. Fresenius J Anal Chem 367(5):474
Jang JT, Nah H, Lee JH, Moon SH, Kim MGM, Cheon J (2009) Critical enhacements of MRI
contrast and hyperthermic effects by dopant-controlled magnetic nanoparticles. Angew Chem
Int Ed 48:1234–1238
Jianrong C, Yuqing M, Nongyue H, Xiaohua W, Sijiao L (2004) Nanotechnology and biosensors.
Biotechnol Adv 22(7):505–518
Jiao X, Luo H, Li N (2013) Fabrication of graphene-gold nanocomposites by electrochemical
co-reduction and their electrocatalytic activity towards 4-nitrophenol oxidation. Electroanal
Chem 691:83–89
Kar P, Choudhury A (2013) Carboxylic acid functionalized multi-walled carbon nanotube doped
polyaniline for chloroform sensors. Sens Actuators B 183:25–33
Kariuki VM, Fasih-Ahmad SA, Osonga FJ, Sadik OA (2016) An electrochemical sensor for
nitrobenzene using π conjugated polymer-embedded nanosilver. Analyst 141:2259–2269
Karthiga D, Anthony SP (2013) Selective colorimetric sensing of toxic metal cations by green
synthesized silver nanoparticles over a wide pH range. RSC Adv 3:16765–16774
5 Development of Environmental Nanosensors for Detection Monitoring. . .
137
the nanoscale matter? Small 2(1):36–50
Fritzsche WN, Taton TA (2003) Metal nanoparticles as labels for heterogeneous, chip-based DNA
detection. Nanotechnology 14(12):R63
Fu AH, Gu WW, Larabell C, Alavistatos AP (2005) Semiconductor nanocrystals for biological
imaging. Curr Opin Neurobiol 15:568–575
Goulart LA, Gonçalves R, Correa AA, Pereira EC (2018) Synergic effect of silver nanoparticles and
carbon nanotubes on the simultaneous voltammetric determination of hydroquinone, catechol,
bisphenol a and phenol. Microchim Acta 185(12):1–9
Govindhan M, Liu Z, Chen A (2016) Design and electrochemical study of platinum-based
nanomaterials for sensitive detection of nitric oxide in biomedical application. Nanomaterials
6:211
Grieshaber D, MacKenzie R, Vörös J, Reimhult E (2008) Electrochemical biosensors—sensor
principles and architectures. Sensors 8:1400–1458
Gui R, An X, Su H, Shen W, Chen Z, Wang X (2012) A near-infrared-emitting CdTe/CdS core/
shell quantum dots-based OFF-ON fluorescence sensor for highly selectiveand sensitive detection of Cd
2+ . Talanta 94:257–262
Gui R, An X, Huang W (2013) An improved method for ratiometric fluorescence detection of pH
and Cd
2+ using fluorescein isothiocyanate-quantum dots conjugates. Anal Chim Acta
767:134–140
Guo J, Zhang Y, Luo Y, Shen F, Sun C (2014) Efficient fluorescence resonance energy transfer
between oppositely charged CdTe quantum dots and gold nanoparticles for turn-on fluorescence
detection of glyphosate. Talanta 125:385–392
Haes AJ, Van Duyne RP (2004) A unified view of propagating and localized surface plasmon
resonance biosensors. Anal Bioanal Chem 379(7–8):920–930
Hansch C, McKarns SC, Smith CJ, Doolittle DJ (2000) Comparative QSAR evidence for a freeradical mechanism of phenol-induced toxicity. Chem Biol Interact 127(1):61–72
Hatchett DW, Josowicz M (2008) Composites of intrinsically conducting polymers as sensing
nanomaterials. Chem Rev 108(2):746–769
Horst C, Silwana B, Iwuoha E, Somerset V (2015) Bismuth-silver bimetallic nanosensor application for the voltammetric analysis of dust and soil samples. J Electroanal Chem 752:1–11
Hu J, Fu K, Bohn PW (2018) Whole-cell pseudomonas aeruginosa localized surface plasmon
resonance aptasensor. Anal Chem 90(3):2326–2332
Huang CC, Chang H-T (2006) Selective gold-nanoparticle based ‘turn-on’ fluorescent sensors for
detection of mercury (II) in aqueous solution. Anal Chem 78(24):8332–8338
Huebra MG, Hernandez P, Nieto O, Ballesteros Y, Hernandez L (2000) Determination of
carbendazimin soil samples by anodic stripping voltammetry using a carbon fiber
ultramicroelectrode. Fresenius J Anal Chem 367(5):474
Jang JT, Nah H, Lee JH, Moon SH, Kim MGM, Cheon J (2009) Critical enhacements of MRI
contrast and hyperthermic effects by dopant-controlled magnetic nanoparticles. Angew Chem
Int Ed 48:1234–1238
Jianrong C, Yuqing M, Nongyue H, Xiaohua W, Sijiao L (2004) Nanotechnology and biosensors.
Biotechnol Adv 22(7):505–518
Jiao X, Luo H, Li N (2013) Fabrication of graphene-gold nanocomposites by electrochemical
co-reduction and their electrocatalytic activity towards 4-nitrophenol oxidation. Electroanal
Chem 691:83–89
Kar P, Choudhury A (2013) Carboxylic acid functionalized multi-walled carbon nanotube doped
polyaniline for chloroform sensors. Sens Actuators B 183:25–33
Kariuki VM, Fasih-Ahmad SA, Osonga FJ, Sadik OA (2016) An electrochemical sensor for
nitrobenzene using π conjugated polymer-embedded nanosilver. Analyst 141:2259–2269
Karthiga D, Anthony SP (2013) Selective colorimetric sensing of toxic metal cations by green
synthesized silver nanoparticles over a wide pH range. RSC Adv 3:16765–16774
5 Development of Environmental Nanosensors for Detection Monitoring. . .
137
