252
Views
5
CrossRef citations to date
0
Altmetric
Research Articles

Colorimetric Detection of Pollutant Trivalent Cations and HSO4 in Aqueous Media Using a New Schiff-base Probe: An Experimental and DFT Studies

&
Pages 33-46 | Received 18 Oct 2018, Accepted 07 Jan 2019, Published online: 27 Feb 2019

References

  • Paul Sima, Abhishek Manna, and Shyamaprosad Goswami, “A Differentially Selective Molecular Probe for Detection of Trivalent Ions (Al3+, Cr3+ and Fe3+) upon Single Excitation in Mixed Aqueous Medium,” Dalton Transactions 44, no. 26 (2015): 11805–10.
  • Hyo Jung Jang, Ji Hye Kang, Dongju Yun, and Cheal Kim, “A Multi-Responsive Naphthalimide-Based “turn-on” Fluorescent Chemosensor for Sensitive Detection of Trivalent Cations Ga3+, Al3+ and Cr3+,” Journal of Fluorescence 28, no. 3 (2018): 785–94.
  • Yonggang Zhao, Zhihua Lin, Haiping Liao, Chunying Duan, and Qingjin Meng, “A Highly Selective Fluorescent Chemosensor for Al3+ derivated from 8-Hydroxyquinoline,”Inorganic Chemistry Communications 9, no. 9 (2006): 966–8.
  • S. Suresh, N. Bhuvanesh, J. Prabhu, A. Thamilselvan, K. Kannan, and R. Nandhakumar, “Pyrene Based Chalcone as a Reversible Fluorescent Chemosensor for Al3+ ion and Its Biological Applications,” Journal of Photochemistry and Photobiology A: Chemistry 359 (2018): 172–82.
  • Gordon L. Klein, “Aluminum: New Recognition of an Old Problem,”Current Opinion in Pharmacology 5, no. 6 (2005): 637–40.
  • Tae Geun Jo, Jae Min. Jung, Jiyeon. Han, Mi Hee. Lim, and Cheal. Kim, “A Single Fluorescent Chemosensor for Multiple Targets of Cu2+, Fe2+/3+ and Al3+ in Living Cells and a near-perfect Aqueous Solution,” RSC Advances 7, no. 46 (2017): 28723–32.
  • Juan Barcelo, and Charlotte. Poschenrieder, “Fast Root Growth Responses, Root Exudates, and Internal Detoxification as Clues to the Mechanisms of Aluminium Toxicity and Resistance: A Review,” Environmental and Experimental Botany 48, no. 1 (2002): 75–92.
  • Gerald D. Fasman, “Aluminum and Alzheimer's Disease: Model Studies,” Coordination Chemistry Reviews 149, (1996): 125–65.
  • Prasunpriya Nayak, “Aluminum: Impacts and Disease,” Environmental Research 89, no. 2 (2002): 101–15.
  • Guy Berthon, “Aluminium Speciation in Relation to Aluminium Bioavailability, Metabolism and Toxicity,” Coordination Chemistry Reviews 228, no. 2 (2002): 319–41.
  • Debasis Bagchi, Sidney J. Stohs, Bernard W. Downs, Manashi Bagchi, and H. G. Preuss, “Cytotoxicity and Oxidative Mechanisms of Different Forms of Chromium,”Toxicology 180no. 1 (2002): 5–22. no. doi.org/10.1016/S0300-483X(02)00378-5
  • A. K. Singh, V. K. Gupta, and Barkha Gupta, “Chromium (III) Selective Membrane Sensors Based on Schiff Bases as Chelating Ionophores,” Analytica Chimica Acta 585, no. 1 (2007): 171–8.
  • Omprakash Sunnapu, Niranjan G. Kotla, Balaji Maddiboyina, Gyati Shilakari Asthana, Jeyabalan Shanmugapriya, Karuppannan Sekar, Subramanian Singaravadivel, and Gandhi Sivaraman, “Rhodamine Based Effective Chemosensor for Chromium (III) and Their Application in Live Cell Imaging,” Sensors and Actuators B: Chemical 246, (2017): 761–8.
  • R. Ahmed Arafat, “The Effect of Dietary Chromium (III) on Growth and Carbohydrate Utilization in Mirror and Common Carp (Cyprinus Carpio) L,” (PhD Thesis, Plymouth University) (2012). http://hdl.handle.net/10026.1/1091
  • Mohd Faraz, Ambreen Abbasi, Faria K. Naqvi, Neeraj Khare, Ram Prasad, Ishan Barman, and Rishikesh Pandey, “Polyindole/cadmium Sulphide Nanocomposite Based Turn-on, multi-ion Fluorescence Sensor for Detection of Cr3+, Fe3+ and Sn2+ Ions,”Sensors and Actuators B: Chemical 269, (2018): 195–202.
  • John B. Vincent, “Quest for the Molecular Mechanism of Chromium Action and Its Relationship to Diabetes,” Nutrition Reviews 58, no. 3 (2009): 67–72.
  • Gholam Babaei Chalmardi, Mahmood Tajbakhsh, Ahmadreza Bekhradnia, and Rahman Hosseinzadeh, “A Highly Sensitive and Selective Novel Fluorescent Chemosensor for Detection of Cr3+ based on a Schiff Base,” Inorganica Chimica Acta 462 (2017): 241–8.
  • Reagan McRae, Pritha Bagchi, S. Sumalekshmy, and Christoph J. Fahrni, “In Situ Imaging of Metals in Cells and Tissues,”Chemical Reviews 109, no. 10 (2009): 4780–827.
  • Chong Wu, Chuan-Zeng Wang, Qin Zhu, Xi Zeng, Carl Redshaw, and Takehiko Yamato, “Click Synthesis of a Quinoline-Functionalized Hexahomotrioxacalix [3] Arene: A Turn-on Fluorescence Chemosensor for Fe3+,” Sensors and Actuators B: Chemical 254 (2018): 52–8.
  • Liang He, Chang Liu, and John H. Xin, “A Novel Turn-on Colorimetric and Fluorescent Sensor for Fe3+ and Al3+ with Solvent-dependent Binding Properties and Its Sequential Response to Carbonate,” Sensors and Actuators B: Chemical 213, (2015): 181–7.
  • Ajar Kamal, Sumit Kumar, Vipan Kumar, and Rakesh Kumar Mahajan, “Selective Sensing Ability of Ferrocene Appended Quinoline-triazole Derivative Toward Fe (III) Ions,” Sensors and Actuators B: Chemical 221, (2015): 370–8.
  • Philip Aisen, Marianne Wessling-Resnick, and Elizabeth A. Leibold, “Iron Metabolism,” Current Opinion in Chemical Biology 3, no. 2 (1999): 200–6.
  • Zhuang Liao, Yang Liu, Su-Fang Han, Dan Wang, Jian-Quan Zheng, Xiang-Jun Zheng, and Lin-Pei Jin, “A Novel Acylhydrazone-based Derivative as Dual-mode Chemosensor for Al3+, Zn2+ and Fe3+ and Its Applications in Cell Imaging,” Sensors and Actuators B: Chemical 244 (2017): 914–21.
  • Shinya Toyokuni, “Role of Iron in Carcinogenesis: cancer as a Ferrotoxic Disease,” Cancer Science 100, no. 1 (2009): 9–16.
  • Tae Geun Jo, Kwon Hee Bok, Jiyeon Han, Mi Hee Lim, and Cheal Kim, “Colorimetric Detection of Fe3+ and Fe2+ and Sequential Fluorescent Detection of Al3+ and Pyrophosphate by an Imidazole-based Chemosensor in a Near-perfect Aqueous Solution,” Dyes and Pigments 139, (2017): 136–47.
  • Pravin N. Borase, Pranila B. Thale, Suban K. Sahoo, and Ganapati S. Shankarling, “An “off–on” colorimetric Chemosensor for Selective Detection of Al3+, Cr3+ and Fe3+: Its Application in Molecular Logic Gate,” Sensors and Actuators B: Chemical 215, (2015): 451–8. https://doi.org/10.1016/j.snb.2015.04.013
  • Shilpa Bothra, Rajender. Kumar, and Suban K. Sahoo, “Pyridoxal Conjugated Gold Nanoparticles for Distinct Colorimetric Detection of Chromium (III) and Iodide Ions in Biological and Environmental Fluids,” New Journal of Chemistry 41, no. 15 (2017): 7339–46.
  • Yachana Upadhyay, Shilpa. Bothra, Rajender. Kumar, and Suban K. Sahoo, “Smartphone‐Assisted Colorimetric Detection of Cr3+ using Vitamin B6 Cofactor Functionalized Gold Nanoparticles and Its Applications in Real Sample Analyses,” ChemistrySelect 3, no. 24 (2018): 6892–6.
  • Yachna Upadhyay, Thangaraj. Anand, Lavanya Tilak. Babu, Priyankar. Paira, Ashok. Kumar Sk, Rajender. Kumar, and Suban K. Sahoo, “Combined Use of Spectrophotometer and Smartphone for the Optical Detection of Fe3+ using a Vitamin B6 Cofactor Conjugated Pyrene Derivative and Its Application in Live Cells Imaging,” Journal of Photochemistry and Photobiology A: Chemistry 361 (2018): 34–40
  • Thangaraj Anand, S. K Ashok Kumar, and K. Sahoo Suban, “A New Al3+ selective Fluorescent Turn-on Sensor Based on Hydrazide-naphthalic Anhydride Conjugate and Its Application in Live Cells Imaging,” Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 204 (2018): 105–112.
  • Yu Ting, Guoxing. Yin, Tingting. Niu, Peng. Yin, Haitao. Li, Youyu. Zhang, Haimin. Chen, Ying. Zeng, and Shouzhuo. Yao, “A Novel Colorimetric and Fluorescent Probe for Simultaneous Detection of SO32-/HSO3− and HSO4− by Different Emission Channels and Its Bioimaging in Living Cells,” Talanta 176 (2018): 1–7.
  • Wei Lu, Jinting. Zhou, Keyuan. Liu, Dan. Chen, Liming. Jiang, and Zhiquan. Shen, “A Polymeric Film Probe with a Turn-on Fluorescence Response to Hydrogen Sulfate Ions in Aqueous Media,” Journal of Materials Chemistry B 1, no. 38 (2013): 5014–20.
  • Umesh Fegade, Jitendra. Bhosale, Hemant. Sharma, Narinder. Singh, Ratnamala. Bendre, and Anil. Kuwar, “Fluorescence Chemosensor for HSO4− Ion Based on Pyrrole-Substituted Salicylimine Zn2+ Complex: Nanomolar Detection,” Journal of Fluorescence 25, no. 4 (2015): 819–24.
  • Masoumeh Orojloo, and Saeid Amani, “Naked-eye Detection of Cyanide Ions in Aqueous Media Based on an Azo-azomethine Chemosensor,” Comptes Rendus Chimie 20, no. 4 (2017): 415–23.
  • Ping Li, You-Ming Zhang, Qi Lin, Jun-Qiang Li, and Tai-Bao Wei, “A Novel Colorimetric HSO4− Sensor in Aqueous Media,” Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 90, (2012): 152–7.
  • Yachana Upadhyay, Shilpa. Bothra, Rajender. Kumar, Heung-Jin. Choi, and Suban K. Sahoo, “Optical Sensing of Hydrogen Sulphate Using Rhodamine 6G Hydrazide from Aqueous Medium,” Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 180, (2017): 44–50.
  • Kundan Tayade, Banashree. Bondhopadhyay, Karunesh. Keshav, Suban K. Sahoo, Anupam. Basu, Jasmider. Singh, Narinder. Singh, Dileep T. Nehete, and Anil. Kuwar, “A Novel Zinc (II) and Hydrogen Sulphate Selective Fluorescent “turn-on” chemosensor Based on Isonicotiamide: INHIBIT Type's Logic Gate and Application in Cancer Cell Imaging,” The Analyst 141, no. 5 (2016): 1814–21.
  • Umesh Fegade, Suban K. Sahoo, Amanpreet. Singh, Pramod. Mahulikar, Sanjay. Attarde, Narinder. Singh, and Anil. Kuwar, “A Selective and Discriminating Noncyclic Receptor for HSO4− Ion Recognition,” RSC Advances 4, no. 29 (2014): 15288–92.
  • Masoumeh Orojloo, and Saeid Amani, “A Highly Selective Chemosensor for Naked-Eye Detection of Fluoride and Aluminium (III) Ions Based on a New Schiff Base Derivative,” Australian Journal of Chemistry 69, no. 8 (2016): 911–8.
  • Masoumeh Orojloo, Raziyeh Arabahmadi, Fatemeh Naderi, Fatemeh Parchegani, Mohammad Solimannejad, Peyman Zolgharnein, and Saeid Amani, “A Novel Receptor for Detection of Zn2+ metal Ion and F−, H2PO4−and AcO− Anions in Aqueous Media a DF Study,” Chemical Papers 72, no. 3 (2018): 719–29.
  • Raziyeh Arab Ahmadi, and Saeid Amani, “Synthesis, Spectroscopy, Thermal Analysis, Magnetic Properties and Biological Activity Studies of Cu(II) and Co(II) Complexes with Schiff Base Dye Ligands,” Molecules 17, no. 6 (2012): 6434–48.
  • Akbar Mobinikhaledi, Mojgan Zendehdel, Parvin Safari, Ahmad. Hamta, and S. Mehdi Shariatzadeh, “Synthesis and Biological Activity Evaluation of Some Binuclear Metal Complexes of Cu(II) and Zn(II) with Tridentate Schiff Base Ligands,” Synthesis and Reactivity in Inorganic, Metal-Organic, and Nano-Metal Chemistry 42, no. 2 (2012): 165–70.
  • Masoumeh Orojloo, Peyman Zolgharnein, Mohammad Solimannejad, and Saeid Amani, “Synthesis and Characterization of Cobalt (II), Nickel (II), Copper (II) and Zinc (II) complexes Derived from Two Schiff Base Ligands: Spectroscopic, thermal, magnetic Moment, electrochemical and Antimicrobial Studies,” Inorganica Chimica Acta 467, (2017): 227–37.
  • T. L. Fonseca, H. C. Georg, K. Coutinho, and S. Canuto, “Polarization and Spectral Shift of Benzophenone in Supercritical Water,” The Journal of Physical Chemistry A 113, no. 17 (2009): 5112–8.
  • Sebastian Mai, Brennan Ashwood, Philipp Marquetand, Carlos E. Crespo-Hern Ndez, and Leticia Gonz Lez, “Solvatochromic Effects on the Absorption Spectrum of 2-Thiocytosine,” The Journal of Physical Chemistry B 121, no. 20 (2017): 5187–96.
  • Werner Likussar, and D. F. Boltz, “Theory of Continuous Variations Plots and a New Method for Spectrophotometric Determination of Extraction and Formation Constants,” Analytical Chemistry 43, no. 10 (1971): 1265–72.
  • Kozo Momoki, Jun Sekino, Hisakuni Sato, and Noboru Yamaguchi, “Theory of Curved Molar Ratio Plots and a New Linear Plotting Method,” Analytical Chemistry 41, no. 10 (1969): 1286–99.
  • H. A. Benesi, and J. H. Hildebrand, “A Spectrophotometric Investigation of the Interaction of Iodine with Aromatic Hydrocarbons,” Journal of the American Chemical Society 71, no. 8 (1949): 2703–7.
  • H. Banu Sakhila,” “Heavy Metals and the Ovary,” Ovarian Toxicology 2 (2013): 191–228.
  • Hyun Jung Kim, Sankarprasad Bhuniya, Rakesh Kumar Mahajan, Rajiv Puri, Hongguang Liu, Kyoung Chul Ko, Jin Yong Lee, and Jong Seung Kim, “Fluorescence Turn-on Sensors for HSO4−,” Chemical Communications 46 (2009): 7128–30.
  • Yeong Keon Jang, U. Chang Nam, Ha Lim Kwon, In Hong Hwang, and Cheal Kim, “A Selective Colorimetric and Fluorescent Chemosensor Based-on Naphthol for Detection of Al3+ and Cu2+,” Dyes and Pigments 99, no. 1 (2013): 6–13.
  • Seokan Park, Keum-Hee Hong, Jong-In Hong, and Hae-Jo Kim, “Azo Dye-based Latent Colorimetric Chemodosimeter for the Selective Detection of Cyanides in Aqueous Buffer,” Sensors and Actuators B: Chemical 174 (2012): 140–4.
  • M. Jea Frisch, G. W. Trucks, H. Bea Schlegel, G. W. Bea Scuseria, M. A. Robb, J. R. Cheeseman, J. A. Montgomery, T. K. Vreven, K. N. Kudin, J. C. Burant, and J. M. Millam, “Gaussian 03, revision c. 02. Gaussian Inc., Wallingford, CT (2004).
  • Mohammad Solimannejad, Masoumeh Orojloo, and Saeid Amani, “Effect of Cooperativity in Lithium Bonding on the Strength of Halogen Bonding and Tetrel Bonding:(LiCN)n···ClYF3 and (LiCN)n···YF3Cl (Y = C, Si and n = 1–5) complexes as a Working Model,” Journal of Molecular Modeling 21, no. 7 (2015): 183.
  • Mandeep K. Chahal, and Muniappan Sankar, “1, 8-Naphthyridinic fluorescent ‘turn-on’ and ‘turn-off’ chemosensors for Detection of F− and Hg2+ ions Mimicking INHIBIT Molecular Logic Behaviour,” Analytical Methods 7, no. 11 (2015): 4552–9.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.