References
- A.J. Janecki, M.H. Montrose, P. Zimniak, A. Zweibaum,
C.M. Tse, S. Khurana, M. Donowitz, Subcellular redistribution
is involved in acute regulation of the brush border Na+/H+
exchanger isoform 3 in human colon adenocarcinoma cell line
caco-2, J. Biol. Chem., 273 (1998) 8790–8798.
- M. Oslo, Regulation of intracellular pH in eukaryotic cells,
Biochem. J., 250 (1988) 1–8.
- R.T. Kennedy, L. Huang, C.A. Aspinwall, Extracellular pH is
required for rapid release of insulin from Zn−insulin precipitates
in β-cell secretory vesicles during exocytosis, J. Am. Chem. Soc.,
118 (1996) 1795–1796.
- A.M. Dennis, W.J. Rhee, D. Sotto, S.N. Dublin, G. Bao, Quantum
dot-fluorescent protein FRET probes for sensing intracellular
pH, ACS Nano, 6 (2012) 2917–2924.
- E.R. Chin, D.G. Allen, The contribution of pH-dependent
mechanisms to fatigue at different intensities in mammalian
single muscle fibres, J. Physiol., 512 (1998) 831–840.
- X. Zhang, Y. Lin, R.J. Gillies, Tumor pH and its measurement,
J. Nucl. Med., 51 (2010) 1167–1170.
- B.B. Lowell, B.M. Spiegelman, Towards a molecular
understanding of adaptive thermogenesis, Nature, 404 (2000)
652–660.
- S.H. Kim, J. Noh, M.K. Jeon, K.W. Kim, L.P. Lee, S.I. Woo,
Micro-Raman thermometry for measuring the temperature
distribution inside the microchannel of a polymerase chain
reaction chip, J. Micromech. Microeng., 16 (2006) 526–530.
- F. Vetrone, R. Naccache, A. Zamarron, A. Juarranz de la Fuente,
F. Sanz-Rodriguez, L. Martinez Maestro, E. Martin Rodriguez,
D. Jaque, J. Garcia Sole, J.A. Capobianco, Temperature sensing
using fluorescent nanothermometers, ACS Nano, 4 (2010)
3254–3258.
- B. Li, H. Ma, B. Zhang, J. Qian, T. Cao, H. Feng, W. Li, Y. Dong,
W. Qin, Dually emitting carbon dots as fluorescent probes
for ratiometric fluorescent sensing of pH values, mercury(II),
chloride and Cr(VI) via different mechanisms, Microchim. Acta,
186 (2019) 341–351.
- X. Cui, Y. Wang, J. Liu, Q. Yang, B. Zhang, Y. Gao, Y. Wang,
G. Lu, Dual functional N- and S-co-doped carbon dots as
the sensor for temperature and Fe3+ ions, Sens. Actuators, B,
242 (2017) 1272–1280.
- Y. Hu, J. Yang, J. Tian, L. Jia, J.-S. Yu, Waste frying oil as a
precursor for one-step synthesis of sulfur-doped carbon dots
with pH-sensitive photoluminescence, Carbon, 77 (2014) 775–782.
- Y. Jiang, X. Yang, C. Ma, C. Wang, H. Li, F. Dong, X. Zhai,
K. Yu, Q. Lin, B. Yang, Photoluminescent smart hydrogels
with reversible and linear thermoresponses, Small, 6 (2010)
2673–2677.
- E.J. McLaurin, L.R. Bradshaw, D.R. Gamelin, Dual-emitting
nanoscale temperature sensors, Chem. Mater., 25 (2013)
1283–1292.
- D. Zhou, M. Lin, X. Liu, J. Li, Z. Chen, D. Yao, H. Sun,
H. Zhang, B. Yang, Conducting the temperature-dependent
conformational change of macrocyclic compounds to the
lattice dilation of quantum dots for achieving an ultrasensitive
nanothermometer, ACS Nano, 7 (2013) 2273–2283.
- J. Shangguan, D. He, X. He, K. Wang, F. Xu, J. Liu, J. Tang,
X. Yang, J. Huang, Label-free carbon-dots-based ratiometric
fluorescence pH nanoprobes for intracellular pH sensing, Anal.
Chem., 88 (2016) 7837–7843.
- W. Shi, F. Guo, M. Han, S. Yuan, W. Guan, H. Li, H. Huang,
Y. Liu, Z. Kang, N,S co-doped carbon dots as a stable bioimaging
probe for detection of intracellular temperature and
tetracycline, J. Mater. Chem. B, 5 (2017) 3293–3299.
- C.D. Brites, P.P. Lima, N.J. Silva, A. Millan, V.S. Amaral, F. Palacio,
L.D. Carlos, Thermometry at the nanoscale, Nanoscale, 4 (2012)
4799–4829.
- D. Jaque, F. Vetrone, Luminescence nanothermometry,
Nanoscale, 4 (2012) 4301–4326.
- H. Nie, M. Li, Q. Li, S. Liang, Y. Tan, L. Sheng, W. Shi,
S.X.-A. Zhang, Carbon dots with continuously tunable
full-color emission and their application in ratiometric pH
sensing, Chem. Mater., 26 (2014) 3104–3112.
- A. Baral, R.D. Engelken, Chromium-based regulations and
greening in metal finishing industries in the USA, Environ. Sci.
Policy, 5 (2002) 121–133.
- A. Zhitkovich, Chromium in drinking water: sources,
metabolism, and cancer risks, Chem. Res. Toxicol., 24 (2011)
1617–1629.
- W. Cieslak, K. Pap, D.R. Bunch, E. Reineks, R. Jackson, R. Steinle,
S. Wang, Highly sensitive measurement of whole blood
chromium by inductively coupled plasma mass spectrometry,
Clin. Biochem., 46 (2013) 266–270.
- V. Arancibia, M. Valderrama, K. Silva, T. Tapia, Determination of
chromium in urine samples by complexation–supercritical fluid
extraction and liquid or gas chromatography, J. Chromatogr. B,
785 (2003) 303–309.
- S. Abbasi, A. Bahiraei, Ultra trace quantification of
chromium(VI) in food and water samples by highly sensitive
catalytic adsorptive stripping voltammetry with rubeanic acid,
Food Chem., 133 (2012) 1075–1080.
- A.N. Anthemidis, G.A. Zachariadis, J.-S. Kougoulis, J.A. Stratis,
Flame atomic absorption spectrometric determination of
chromium(VI) by on-line preconcentration system using a
PTFE packed column, Talanta, 57 (2002) 15–22.
- X. Song, H. Sun, S. Yang, S. Zhao, F. Liao, Synthesis of
photoluminescent o-phenylenediamine–m-phenylenediamine
copolymer nanospheres: an effective fluorescent sensing
platform for selective and sensitive detection of chromium(VI)
ion, J. Lumin., 169 (2016) 186–190.
- K.H. Lu, J.H. Lin, C.Y. Lin, C.F. Chen, Y.C. Yeh, A fluorometric
paper test for chromium(VI) based on the use of N-doped
carbon dots, Microchim. Acta, 186 (2019) 227–234.
- K. Luo, X.Y. Jiang, Fluorescent carbon quantum dots with Fe(III/II) irons as bridge for the detection of ascorbic acid and H2O2,
J. Fluoresc., 29 (2019) 769–777.
- S. Liao, X. Zhao, F. Zhu, M. Chen, Z. Wu, X. Song, H. Yang,
X. Chen, Novel S,N-doped carbon quantum dot-based “off-on”
fluorescent sensor for silver ion and cysteine, Talanta, 180 (2018)
300–308.
- C. Wang, C. Wang, P. Xu, A. Li, Y. Chen, K. Zhuo, Synthesis
of cellulose-derived carbon dots using acidic ionic liquid as a
catalyst and its application for detection of Hg2+, J. Mater. Sci.,
51 (2015) 861–867.
- V. Ramanan, S.K. Thiyagarajan, K. Raji, R. Suresh, R. Sekar,
P. Ramamurthy, Outright green synthesis of fluorescent carbon
dots from eutrophic algal blooms for in vitro imaging, ACS
Sustainable Chem. Eng., 4 (2016) 4724–4731.
- C. Wang, Z. Xu, H. Cheng, H. Lin, M.G. Humphrey, C. Zhang,
A hydrothermal route to water-stable luminescent carbon dots
as nanosensors for pH and temperature, Carbon, 82 (2015)
87–95.
- S. Liao, F. Zhu, X. Zhao, H. Yang, X. Chen, A reusable P,Ndoped
carbon quantum dot fluorescent sensor for cobalt ion,
Sens. Actuators, B, 260 (2018) 156–164.
- X. Jia, X. Yang, J. Li, D. Li, E. Wang, Stable Cu nanoclusters: from
an aggregation-induced emission mechanism to biosensing
and catalytic applications, Chem. Commun., 50 (2014) 237–239.