Anmei SU, Di W, Xin S, Qingmei Z, Yongren C, Jiachen L, Yilin W (2018) Synthesis of
fluorescent carbon quantum dots from dried lemon peel for determination of carmine in drinks.
Chem Res Chin Univ 34:164–168
Aoudj S, Khelifa A, Drouiche N, Hecini M, Hamitouche H (2010) Electrocoagulation process
applied to wastewater containing dyes from textile industry. Chem Eng Process 49:1176–1182
Asadian E, Ghalkhani M, Shahrokhian S (2019) Electrochemical sensing based on carbon
nanoparticles: a review. Sens Actuators B 293:183–209
Bahrami B, Hojjat-Farsangi M, Mohammadi H, Anvari E, Ghalamfarsa G, Yousefi M, JadidiNiaragh F (2017) Nanoparticles and targeted drug delivery in cancer therapy. Immunol Lett
190:64–83
Basu A, Suryawanshi A, Kumawat B, Dandia A, Guin D, Ogale SB (2015) Starch (Tapioca) to
carbon dots: an efficient green approach to an on–off–on photoluminescence probe for fluoride
ion sensing. Analyst 140:1837–1841
Bukasov R, Filchakova O, Gudun K, Bouhrara M (2018) Strong surface enhanced fluorescence of
carbon dot labeled bacteria cells observed with high contrast on gold film. J Fluoresc 28:1–4
Chakraborty D, Sarkar S, Das PK (2018) Blood dots: hemoglobin-derived carbon dots as hydrogen
peroxide sensors and pro-drug activators. ACS Sustain Chem Eng 6:4661–4670
Chaudhary S, Kaur Y, Umar A, Chaudhary GR (2016a) Ionic liquid and surfactant functionalized
ZnO nanoadsorbent for recyclable proficient adsorption of toxic dyes from waste water. J Mol
Liq 224:1294–1304
Chaudhary S, Kaur Y, Umar A, Chaudhary GR (2016b) 1-butyl-3-methylimidazolium
tetrafluoroborate functionalized ZnO nanoparticles for removal of toxic organic dyes. J Mol
Liq 220:1013–1021
Chaudhary S, Kumar S, Kaur B, Mehta SK (2016c) Potential prospects for carbon dots as a
fluorescence sensing probe for metal ions. RSC Adv 6:90526–90536
Chaudhary S, Sharma P, Renu R, Kumar R (2016d) Hydroxyapatite doped CeO 2 nanoparticles:
impact on biocompatibility and dye adsorption properties. RSC Adv 6:62797–62809
Chaudhary S, Kumar S, Chaudhary GR (2019) Tuning of structural, optical and toxicological
properties of Gd
3+ doped Yb 2 O 3 nanoparticles. Ceram Int 45:19307–19315
Chavez-Sumarriva I, Van Steenberge PHM, Dhooge DR (2016) New insights in the treatment of
waste water with graphene: dual site adsorption by sodium dodecylbenzenesulfonate. Ind Eng
Chem Res 55:9387–9396
Corsi I, Winther-Nielsen M, Sethi R, Punta C, Della Torre C, Libralato G, Lofrano G, Sabatini L,
Aiello M, Fiordi L (2018) Ecofriendly nanotechnologies and nanomaterials for environmental
applications: key issue and consensus recommendations for sustainable and ecosafe
nanoremediation. Ecotoxicol Environ Saf 154:237–244
Das B, Pal P, Dadhich P, Dutta J, Dhara S (2019) In vivo cell tracking, reactive oxygen species
scavenging, and antioxidative gene down regulation by long-term exposure of biomass-derived
carbon dots. ACS Biomater Sci Eng 5:346–356
De B, Karak N (2013) A green and facile approach for the synthesis of water soluble fluorescent
carbon dots from banana juice. RSC Adv 3:8286–8290
Degs YA, Khraisheh MAM, Allen SJ, Ahmad NM (2000) Effect of carbon surface chemistry on the
removal of reactive dyes from textile effluent. Water Res 34:927–935
Devi P, Rajput P, Thakur A, Kim KH, Kumar P (2019) Recent advances in carbon quantum
dot-based sensing of heavy metals in water. Trends Anal Chem 114:171–195
Ding H, Du F, Liu P, Chen Z, Shen J (2015) DNA–carbon dots function as fluorescent vehicles for
drug delivery. ACS Appl Mater Interfaces 7:6889–6897
Ding H, Yu SB, Wei JS, Xiong HM (2016) Full-color light-emitting carbon dots with a surfacestate-controlled luminescence mechanism. ACS Nano 10:484–491
Essner JB, Laber CH, Ravula S, Polo-parada L, Baker GA (2016) Pee-dots: biocompatible
fluorescent carbon dots derived from the upcycling of urine. Green Chem 18:243–250
7 Emerging Potential of Nano-Based Techniques for Dye Removal
185
fluorescent carbon quantum dots from dried lemon peel for determination of carmine in drinks.
Chem Res Chin Univ 34:164–168
Aoudj S, Khelifa A, Drouiche N, Hecini M, Hamitouche H (2010) Electrocoagulation process
applied to wastewater containing dyes from textile industry. Chem Eng Process 49:1176–1182
Asadian E, Ghalkhani M, Shahrokhian S (2019) Electrochemical sensing based on carbon
nanoparticles: a review. Sens Actuators B 293:183–209
Bahrami B, Hojjat-Farsangi M, Mohammadi H, Anvari E, Ghalamfarsa G, Yousefi M, JadidiNiaragh F (2017) Nanoparticles and targeted drug delivery in cancer therapy. Immunol Lett
190:64–83
Basu A, Suryawanshi A, Kumawat B, Dandia A, Guin D, Ogale SB (2015) Starch (Tapioca) to
carbon dots: an efficient green approach to an on–off–on photoluminescence probe for fluoride
ion sensing. Analyst 140:1837–1841
Bukasov R, Filchakova O, Gudun K, Bouhrara M (2018) Strong surface enhanced fluorescence of
carbon dot labeled bacteria cells observed with high contrast on gold film. J Fluoresc 28:1–4
Chakraborty D, Sarkar S, Das PK (2018) Blood dots: hemoglobin-derived carbon dots as hydrogen
peroxide sensors and pro-drug activators. ACS Sustain Chem Eng 6:4661–4670
Chaudhary S, Kaur Y, Umar A, Chaudhary GR (2016a) Ionic liquid and surfactant functionalized
ZnO nanoadsorbent for recyclable proficient adsorption of toxic dyes from waste water. J Mol
Liq 224:1294–1304
Chaudhary S, Kaur Y, Umar A, Chaudhary GR (2016b) 1-butyl-3-methylimidazolium
tetrafluoroborate functionalized ZnO nanoparticles for removal of toxic organic dyes. J Mol
Liq 220:1013–1021
Chaudhary S, Kumar S, Kaur B, Mehta SK (2016c) Potential prospects for carbon dots as a
fluorescence sensing probe for metal ions. RSC Adv 6:90526–90536
Chaudhary S, Sharma P, Renu R, Kumar R (2016d) Hydroxyapatite doped CeO 2 nanoparticles:
impact on biocompatibility and dye adsorption properties. RSC Adv 6:62797–62809
Chaudhary S, Kumar S, Chaudhary GR (2019) Tuning of structural, optical and toxicological
properties of Gd
3+ doped Yb 2 O 3 nanoparticles. Ceram Int 45:19307–19315
Chavez-Sumarriva I, Van Steenberge PHM, Dhooge DR (2016) New insights in the treatment of
waste water with graphene: dual site adsorption by sodium dodecylbenzenesulfonate. Ind Eng
Chem Res 55:9387–9396
Corsi I, Winther-Nielsen M, Sethi R, Punta C, Della Torre C, Libralato G, Lofrano G, Sabatini L,
Aiello M, Fiordi L (2018) Ecofriendly nanotechnologies and nanomaterials for environmental
applications: key issue and consensus recommendations for sustainable and ecosafe
nanoremediation. Ecotoxicol Environ Saf 154:237–244
Das B, Pal P, Dadhich P, Dutta J, Dhara S (2019) In vivo cell tracking, reactive oxygen species
scavenging, and antioxidative gene down regulation by long-term exposure of biomass-derived
carbon dots. ACS Biomater Sci Eng 5:346–356
De B, Karak N (2013) A green and facile approach for the synthesis of water soluble fluorescent
carbon dots from banana juice. RSC Adv 3:8286–8290
Degs YA, Khraisheh MAM, Allen SJ, Ahmad NM (2000) Effect of carbon surface chemistry on the
removal of reactive dyes from textile effluent. Water Res 34:927–935
Devi P, Rajput P, Thakur A, Kim KH, Kumar P (2019) Recent advances in carbon quantum
dot-based sensing of heavy metals in water. Trends Anal Chem 114:171–195
Ding H, Du F, Liu P, Chen Z, Shen J (2015) DNA–carbon dots function as fluorescent vehicles for
drug delivery. ACS Appl Mater Interfaces 7:6889–6897
Ding H, Yu SB, Wei JS, Xiong HM (2016) Full-color light-emitting carbon dots with a surfacestate-controlled luminescence mechanism. ACS Nano 10:484–491
Essner JB, Laber CH, Ravula S, Polo-parada L, Baker GA (2016) Pee-dots: biocompatible
fluorescent carbon dots derived from the upcycling of urine. Green Chem 18:243–250
7 Emerging Potential of Nano-Based Techniques for Dye Removal
185
