Kattke MD, Gao EJ, Sapsford KE, Stephenson LD, Kumar A (2011) FRET-based quantum dot
immunoassay for rapid and sensitive detection of Aspergillus amstelodami. Sensors
11:6396–6410
Kaur R, Sharma SK, Tripathy SK (2019) Advantages and limitations of environmental nanosensors.
In: Advances in nanosensors for biological and environmental analysis. Elsevier, Amsterdam,
pp 119–132
Ke J, Li X, Shi Y, Zhao Q, Jiang X (2012) A facile and highly sensitive probe for hg(II) based on
metal-induced aggregation of ZnSe/ZnS quantum dots. Nanoscale 4:4996–5001
Kelly KL, Coronado E, Zhao LL, Schatz GC (2003) The optical properties of metal nanoparticles:
the influence of size, shape, and dielectric environment. J Phys Chem B 107(3):668–677
Khoang ND, Trung DD, Duy NV, Hoa ND, Hieu NV (2012) Design of SnO 2 /ZnO hierarchical
nanostructures for enhanced ethanol gas-sensing performance. Sens Actuators B 174:594–601
Kneipp K, Kneipp H, Itzkan I, Dasari RR, Feld MS (1999) Ultrasensitive chemical analysis by
Raman spectroscopy. Chem Rev 99:2957–2975
Koneswaran M, Narayanaswamy R (2009) L-cysteine-capped ZnS quantum dots based fluorescence sensor for Cu
2+ ion. Sens Actuators B 139:104–109
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
Koo YEL, Cao Y, Kopelman R, Koo SM, Brasuel M, Philbert MA (2004) Real-time measurements
of dissolved oxygen inside live cells by organically modified silicate fluorescent nanosensors.
Anal Chem 76(9):2498–24505
Ku Z, Rong Y, Xu M, Liu T, Han H (2013) Full printable processed mesoscopic CH 3 NH 3 PbI 3 /TiO 2
heterojunction solar cells with carbon counter electrode. Sci Rep 3:3132
Kumar N, Hu Y, Singh S, Mizaikoff B (2018) Emerging biosensor platforms for the assessment of
water-borne pathogens. Analyst 143:359–373
Kumar AA, Kumar SKN, Aniley AA, Fernandez RE, Bhansali S (2019) Hydrothermal growth of
zinc oxide (ZnO) nanorods (NRs) on screen printed IDEs for pH measurement application. J
Electrochem Soc 166(9):B3264–B3270
Laine M, Jorgense NK (1996) Strawcompost and bioremediated soil as inocula for the bioremediation of chlorophenol contaminated soil. Appl Environ Microbiol 54:1507
Lebégue E, Anderson CM, Dick JE, Webb LJ, Bard AJ (2015) Electrochemical detection of single
phospholipid vesicle collision at a Pt ultramicroelectrode. Langmuir 31(42):11734–11739
Lee H, Yoon T-J, Weissleder R (2011) Highly magnetic core shell nanoparticles with unique
magnetization mechanism. Angew Chem Int Ed 50:463–4666
Lee SW, Lee W, Lee D, Choi Y, Kim W, Park J, Lee JH, Lee G, Yoon DS (2018) A simple carbon
adhesive tape-based NO 2 gas sensor. Sens Actuators B 266:485–492
Lee EH, Lee SK, Kim MJ, Lee S-W (2019) Simple and rapid detection of bisphenol a using a gold
nanoparticle-based colorimetric aptasensor. Food Chem 287:205–213
Leung WH, Zou L, Lo W-H, Chan P-H (2013) An amyloid-fibril-based colorimetric nanosensor for
rapid and sensitive chromium (VI) detection. Chem Plus Chem 78:1440–1445
Li J, Mei F, Li WY, He XW, Zhang YK (2008) Study on the fluorescence resonance energy transfer
between CdTe QDs abd butyl-rhodamine B in the presence of CTMAB and its application on
the detection of hg(II). Spectrochim Acta A Mol Biomol Spectrosc 70:811–817
Li I, Luo GJ, Brismar Y, Fu H (2013) Blinking, flickering, and correlation in fluorescence of single
colloidal CdSe quantum dots with different shells under different extinctions. J Phys Chem C
117:4844–4851
Li Y, Sun JZ, Bian C, Tong JH, Dong HP, Zhang H, Xia SH (2015a) Copper nano-clusters prepared
by one-step electrodeposition and its application on nitrate sensing. AIP Adv 5(041312):1–7
Li Z, Fu Y, Fang W, Li Y (2015b) Electrochemical impedence immunosensors based on selfassembled monolayers for rapid detection of Escherichia coli O157:H7 with signal amplification
using lectin. Sensors 15:19212–19224
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(39):12298–12305
138
U. Chakraborty et al.
immunoassay for rapid and sensitive detection of Aspergillus amstelodami. Sensors
11:6396–6410
Kaur R, Sharma SK, Tripathy SK (2019) Advantages and limitations of environmental nanosensors.
In: Advances in nanosensors for biological and environmental analysis. Elsevier, Amsterdam,
pp 119–132
Ke J, Li X, Shi Y, Zhao Q, Jiang X (2012) A facile and highly sensitive probe for hg(II) based on
metal-induced aggregation of ZnSe/ZnS quantum dots. Nanoscale 4:4996–5001
Kelly KL, Coronado E, Zhao LL, Schatz GC (2003) The optical properties of metal nanoparticles:
the influence of size, shape, and dielectric environment. J Phys Chem B 107(3):668–677
Khoang ND, Trung DD, Duy NV, Hoa ND, Hieu NV (2012) Design of SnO 2 /ZnO hierarchical
nanostructures for enhanced ethanol gas-sensing performance. Sens Actuators B 174:594–601
Kneipp K, Kneipp H, Itzkan I, Dasari RR, Feld MS (1999) Ultrasensitive chemical analysis by
Raman spectroscopy. Chem Rev 99:2957–2975
Koneswaran M, Narayanaswamy R (2009) L-cysteine-capped ZnS quantum dots based fluorescence sensor for Cu
2+ ion. Sens Actuators B 139:104–109
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
Koo YEL, Cao Y, Kopelman R, Koo SM, Brasuel M, Philbert MA (2004) Real-time measurements
of dissolved oxygen inside live cells by organically modified silicate fluorescent nanosensors.
Anal Chem 76(9):2498–24505
Ku Z, Rong Y, Xu M, Liu T, Han H (2013) Full printable processed mesoscopic CH 3 NH 3 PbI 3 /TiO 2
heterojunction solar cells with carbon counter electrode. Sci Rep 3:3132
Kumar N, Hu Y, Singh S, Mizaikoff B (2018) Emerging biosensor platforms for the assessment of
water-borne pathogens. Analyst 143:359–373
Kumar AA, Kumar SKN, Aniley AA, Fernandez RE, Bhansali S (2019) Hydrothermal growth of
zinc oxide (ZnO) nanorods (NRs) on screen printed IDEs for pH measurement application. J
Electrochem Soc 166(9):B3264–B3270
Laine M, Jorgense NK (1996) Strawcompost and bioremediated soil as inocula for the bioremediation of chlorophenol contaminated soil. Appl Environ Microbiol 54:1507
Lebégue E, Anderson CM, Dick JE, Webb LJ, Bard AJ (2015) Electrochemical detection of single
phospholipid vesicle collision at a Pt ultramicroelectrode. Langmuir 31(42):11734–11739
Lee H, Yoon T-J, Weissleder R (2011) Highly magnetic core shell nanoparticles with unique
magnetization mechanism. Angew Chem Int Ed 50:463–4666
Lee SW, Lee W, Lee D, Choi Y, Kim W, Park J, Lee JH, Lee G, Yoon DS (2018) A simple carbon
adhesive tape-based NO 2 gas sensor. Sens Actuators B 266:485–492
Lee EH, Lee SK, Kim MJ, Lee S-W (2019) Simple and rapid detection of bisphenol a using a gold
nanoparticle-based colorimetric aptasensor. Food Chem 287:205–213
Leung WH, Zou L, Lo W-H, Chan P-H (2013) An amyloid-fibril-based colorimetric nanosensor for
rapid and sensitive chromium (VI) detection. Chem Plus Chem 78:1440–1445
Li J, Mei F, Li WY, He XW, Zhang YK (2008) Study on the fluorescence resonance energy transfer
between CdTe QDs abd butyl-rhodamine B in the presence of CTMAB and its application on
the detection of hg(II). Spectrochim Acta A Mol Biomol Spectrosc 70:811–817
Li I, Luo GJ, Brismar Y, Fu H (2013) Blinking, flickering, and correlation in fluorescence of single
colloidal CdSe quantum dots with different shells under different extinctions. J Phys Chem C
117:4844–4851
Li Y, Sun JZ, Bian C, Tong JH, Dong HP, Zhang H, Xia SH (2015a) Copper nano-clusters prepared
by one-step electrodeposition and its application on nitrate sensing. AIP Adv 5(041312):1–7
Li Z, Fu Y, Fang W, Li Y (2015b) Electrochemical impedence immunosensors based on selfassembled monolayers for rapid detection of Escherichia coli O157:H7 with signal amplification
using lectin. Sensors 15:19212–19224
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(39):12298–12305
138
U. Chakraborty et al.
