Polyaniline- nanofibers (PANI) / titanium dioxide (TiO2) for Cr(III) and Cr(VI) detection in aqueos solution by using surface plasmon resonance

R. Giné Garriga, A. Pérez Foguet, Unravelling the linkages between water, sanitation, hygiene and rural poverty: the WASH poverty index. Water Resour. Manage. 27, 1501–1515 (2013)

Article  Google Scholar 

L. Fewtrell et al., Water, sanitation, and hygiene interventions to reduce diarrhoea in less developed countries: a systematic review and meta-analysis. Lancet Infect Dis. 5(1), 42–52 (2005)

J. Theron, J.A. Walker, T.E. Cloete, Nanotechnology and water treatment: applications and emerging opportunities. Crit. Rev. Microbiol. 34(1), 43–69 (2008)

Article  Google Scholar 

F. Ge et al., Effective removal of heavy metal ions Cd2+, Zn2+, Pb2+, Cu2 + from aqueous solution by polymer-modified magnetic nanoparticles. J. Hazard. Mater. 211, 366–372 (2012)

Article  Google Scholar 

R.P. Schwarzenbach et al., Global water pollution and human health. Annu. Rev. Environ. Resour. 35, 109–136 (2010)

Article  Google Scholar 

N. Soliman, A. Moustafa, Industrial solid waste for heavy metals adsorption features and challenges; a review. J. Mater. Res. Technol. 9(5), 10235–10253 (2020)

Article  Google Scholar 

S.S. Kolluru et al., Heavy metal removal from wastewater using nanomaterials-process and engineering aspects. Process Saf. Environ. Prot. 150, 323–355 (2021)

Article  Google Scholar 

A. Tripathi, M.R. Ranjan, Heavy metal removal from wastewater using low cost adsorbents. J. Bioremed Biodeg. 6(6), 315 (2015)

Article  Google Scholar 

K. Gupta et al., Recent advances in adsorptive removal of heavy metal and metalloid ions by metal oxide-based nanomaterials. Coord. Chem. Rev. 445, 214100 (2021)

Article  Google Scholar 

L. Joseph et al., Removal of heavy metals from water sources in the developing world using low-cost materials: A review. Chemosphere. 229, 142–159 (2019)

S. Al-Rekabi et al., Hydrous ferric oxide-magnetite-reduced graphene oxide nanocomposite for optical detection of arsenic using surface plasmon resonance. Opt. Laser Technol. 111, 417–423 (2019)

Article  ADS  Google Scholar 

Y. Mustapha Kamil et al., Arsenic detection using surface plasmon resonance sensor with hydrous ferric oxide layer. Photonic Sens. 12(3), 220306 (2022)

Article  ADS  Google Scholar 

K. Shrivas et al., Localized surface plasmon resonance of silver nanoparticles for sensitive colorimetric detection of chromium in surface water, industrial waste water and vegetable samples. Anal. Methods. 8(9), 2088–2096 (2016)

Article  Google Scholar 

S.K. Pradhan et al., Synthesis and characterization of ecofriendly silver nanoparticles combined with yttrium oxide (Ag-Y2O3) nanocomposite with assorted adsorption capacity for Cu (II) and cr (VI) removal: a mechanism perspective. J. Water Process. Eng. 32, 100917 (2019)

Article  Google Scholar 

J. Xin et al., A rapid colorimetric detection method of trace Cr (VI) based on the redox etching of Agcore–Aushell nanoparticles at room temperature. Talanta. 101, 122–127 (2012)

M.H. Sosa Lissarrague et al., Heavy metal removal from aqueous effluents by TiO2 and ZnO nanomaterials. Adsorpt Sci Technol. (2023)

K.-C. Hsu et al., An on-line microfluidic device coupled with inductively coupled plasma mass spectrometry for chromium speciation. J. Anal. At. Spectrom. 28(8), 1320–1326 (2013)

Article  Google Scholar 

P. Li et al., Determination of hexavalent chromium in traditional Chinese medicines by high-performance liquid chromatography with inductively coupled plasma mass spectrometry. J. Sep. Sci. 38(23), 4043–4047 (2015)

Article  Google Scholar 

Y. He et al., Interfacial potential barrier driven electrochemical detection of Cr6+. Anal. Chim. Acta. 1029, 8–14 (2018)

Article  ADS  Google Scholar 

C.M. Stern et al., Emerging investigator series: carbon electrodes are effective for the detection and reduction of hexavalent chromium in water. Environ. Science: Water Res. Technol. 6(5), 1256–1261 (2020)

Google Scholar 

K. Cheballah et al., Simultaneous removal of hexavalent chromium and COD from industrial wastewater by bipolar electrocoagulation. Chemical Engineering and Processing: Process Intensification. 96, 94–99 (2015)

Z. Sun, P. Liang, Determination of cr (III) and total chromium in water samples by cloud point extraction and flame atomic absorption spectrometry. Microchim. Acta. 162, 121–125 (2008)

Article  Google Scholar 

M. Nafti et al., Determination of chromium (VI) in airborne particulate matter by electrothermal atomic absorption spectrometry. Anal. Lett. 50(12), 2012–2022 (2017)

Article  ADS  Google Scholar 

J. Chwastowska et al., Speciation of chromium in mineral waters and salinas by solid-phase extraction and graphite furnace atomic absorption spectrometry. Talanta. 66(5), 1345–1349 (2005)

Article  Google Scholar 

Y. Tan et al., A very strong blue fluorescent probe for hexavalent chromium detection with highly selective and sensitive performance. J. Electron. Mater. 48, 827–837 (2019)

Article  ADS  Google Scholar 

B.D. Gupta, A.M. Shrivastav, S.P. Usha, Optical Sensors for Biomedical Diagnostics and Environmental Monitoring (CRC, 2017)

C. Jorn, E.P. Lai, S. Sadeghi, Surface plasmon resonance sensor for hg (II) detection by binding interactions with polypyrrole and 2-mercaptobenzothiazole. Sens. Actuators B. 101(1–2), 236–241 (2004)

Google Scholar 

S.S. Patil et al., Synthesis of titanium oxide-polyaniline nanotube composite and its superior field emission characteristics. in 2011 24th International Vacuum Nanoelectronics Conference. IEEE, (2011)

A.K. Sharma, R. Jha, B. Gupta, Fiber-optic sensors based on surface plasmon resonance: a comprehensive review. IEEE Sens. J. 7(8), 1118–1129 (2007)

Article  ADS  Google Scholar 

Kenry, B. Liu, Recent. Adv. Biodegradable Conducting Polym. Their Biomedical Appl. Biomacromolecules. 19(6), 1783–1803 (2018)

Google Scholar 

M. Bharti et al., Conductive polymers: creating their niche in thermoelectric domain. Prog Mater. Sci. 93, 270–310 (2018)

Article  Google Scholar 

A.N. Andriianova et al., Antibacterial properties of polyaniline derivatives. J. Appl. Polym. Sci. 138(47), 51397 (2021)

Article  Google Scholar 

J.K. Koh et al., Highly efficient, iodine-free dye‐sensitized solar cells with solid‐state synthesis of conducting polymers. Adv. Mater. 23(14), 1641–1646 (2011)

Article  Google Scholar 

M.G. Tadesse, A.S. Ahmmed, J.F. Lübben, Rev. Conductive Polym. Compos. Supercapacitor Appl. J. Compos. Sci. 8(2), 53 (2024)

Google Scholar 

Y. Yuan et al., Recent progress on mechanisms, principles, and strategies for high-activity and high‐stability non‐PGM fuel cell catalyst design. Carbon Energy. e426 (2024)

M. Chaturvedi et al., Bio-inspired graphene nanocomposite enabled electrochemical immunosensor for detection and quantification of NS1 protein of dengue virus. Electrochim. Acta. 475, 143630 (2024)

Article  Google Scholar 

A. Nasar, Polyaniline (PANI) based composites for the adsorptive treatment of polluted water. Smart Polym. Compos. 21, 40 (2018)

Google Scholar 

G.A. Snook, P. Kao, A.S. Best, Conducting-polymer-based supercapacitor devices electrodes. J. Power Sources. 196(1), 1–12 (2011)

Google Scholar 

A.M. Youssef, F.M. Malhat, Selective removal of heavy metals from drinking water using titanium dioxide nanowire. Macromolecular Symposia. 2014. Wiley Online Library

K. Hristovski, A. Baumgardner, P. Westerhoff, Selecting metal oxide nanomaterials for arsenic removal in fixed bed columns: from nanopowders to aggregated nanoparticle media. J. Hazard. Mater. 147(1–2), 265–274 (2007)

Article  Google Scholar 

S. Ibrahim et al., Room temperature ammonia sensing using tapered multimode fiber coated with polyaniline nanofibers. Opt. Express. 23(3), 2837–2845 (2015)

Article  ADS  MathSciNet  Google Scholar 

S. Kandasamy et al., Adsorption of chromium ions from aqueous solutions by synthesized nanoparticles, J. Nanomater. 2022, 1–8 (2022)

A. Alwahib et al., Reduced graphene oxide/maghemite nanocomposite for detection of hydrocarbon vapor using surface plasmon resonance. IEEE Photonics J. 8(4), 1–9 (2016)

Article  Google Scholar 

X. Xie, L. Gao, Effect of crystal structure on adsorption behaviors of nanosized TiO2 for heavy-metal cations. Curr Appl Phys. 9(3), S185–S188 (2009)

M. Bat-Amgalan et al., Adsorption of Cr (III) from an aqueous solution by chitosan beads modified with sodium dodecyl sulfate (SDS). J. Environ. Prot. 12(11), 939–960 (2021)

Article  Google Scholar 

N.F. Lokman et al., Highly sensitive SPR response of Au/chitosan/graphene oxide nanostructured thin films toward pb (II) ions. Sens. Actuators B. 195, 459–466 (2014)

Article  Google Scholar 

B.H. Ong et al., Optimised film thickness for maximum evanescent field enhancement of a bimetallic film surface plasmon resonance biosensor. Sens. Actuators B. 114(2), 1028–1034 (2006)

Article  Google Scholar 

J. Zhang et al., Preparation and application of triangular silver nanoplates/chitosan composite in surface plasmon resonance biosensing. Anal. Chim. Acta. 769, 114–120 (2013)

Article  ADS  Google Scholar 

H. Gedam, A.R.S. Dongre, A.K. Bansiwal, Synthesis and characterization of graphite doped chitosan composite for batch adsorption of lead (II) ions from aqueous solution. Adv. Mater. Lett. 6(1), 59–67 (2015)

Article  Google Scholar 

N. Wang et al., Dual-functional sites for synergistic adsorption of Cr (Vi) and Sb (V) by polyaniline-Tio2 hydrate: Adsorption behaviors, sites and mechanisms. Front. Env. Sci. Eng. 16(8), 105 (2022)

N.K. Sompalli et al., Tailor-made porous polymer and silica monolithic designs as probe anchoring templates for the solid-state naked eye sensing and preconcentration of hexavalent chromium. Sens. Actuators B. 298, 126896 (2019)

Article  Google Scholar 

N.I. Ibrahim, A.S. Wasfi, A comparative study of polyaniline/MWCNT with polyaniline/SWCNT nanocomposite films synthesized by microwave plasma polymerization. Synth. Met. 250, 49–54 (2019)

Article  Google Scholar 

M. Chellappa et al., Preparation and evaluation of the cytotoxic nature of TiO2 nanoparticles by direct contact method. Int. J. Nanomed. 10(sup2), 31–41 (2015)

Google Scholar 

W. Wang, X. Xie, S. He, Optimal Des. polyaniline-coated surf. Acoust. wave Based Humidity Sens. Sens. 13(12), 16816–16828 (2013)

Google Scholar 

F. Cherono, N. Mburu, B. Kakoi, Adsorption of lead, copper and zinc in a multi-metal aqueous solution by waste rubber tires for the design of single batch adsorber. Heliyon. 7(11) (2021)

A.R. Sadrolhosseini et al., Application of polypyrrole-chitosan layer for detection of zn (II) and ni (II) in aqueous solutions using surface plasmon resonance. Int. J. Polym. Mater. Polym. Biomaterials. 62(5), 284–287 (2013)

Article  Google Scholar 

E.A. Ali et al., Studies on adsorption behavior of Cu (II) and cd (II) onto aminothiophene derivatives of Styrene Maleic anhydride copolymer. J. Taiwan Inst. Chem. Eng. 64, 325–335 (2016)

Article  Google Scholar 

N. Mubarak et al., Removal of heavy metals from wastewater using carbon nanotubes. Sep. Purif. Reviews. 43(4), 311–338 (2014)

Article  Google Scholar 

Y. Zheng et al., Photonic crystal waveguides composed of hyperbolic metamaterials for high-FOM nano-sensing. (2023)

S.H. El-Gohary, N.-H. Kim, K.M. Byun, Optical determination of thick graphene layer number based on surface plasmon resonance. J. Nanophotonics. 7(1), 073799–073799 (2013)

Article  ADS  Google Scholar 

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