Sains Malaysiana 48(10)(2019): 2161–2167

http://dx.doi.org/10.17576/jsm-2019-4810-11

 

Symmetrical Azine Colorimetric and Fluorometric Turn-Off Chemosensor for Formaldehyde Detection

(Kolorimetri Simetri Azina dan Fluorometri Mematikan Kemoderia untuk Pengesanan Formaldehid)

 

NURUL HIDAYAH, BAMBANG PURWONO* & HARNO DWI PRANOWO

 

Department of Chemistry, Universitas Gadjah Mada, Bulaksumur, 55281 Yogyakarta, Indonesia

 

Diserahkan: 21 Mei 2019/Diterima: 1 Ogos 2019

 

ABSTRACT

Azine derivative 6,6’-((1E,1’E)-hydrazine-1,2-diylidenebis(methanyly-lidene))bis(3,4-dimethoxy-aniline) CHA has been synthesized by condensation of 6-nitroveratraldehyde with malononitrile followed by reduction using 10% Pd/C and hydrazine hydrate. In the presence of formaldehyde, CHA chemosensor in ethanol showed a yellow-to-red color change observable by the naked eyes and ‘turn off’ type fluorescence quenching in ethanol. This phenomenon was confirmed by UV-Vis, fluorescence and 1H NMR spectroscopy. The CHA spectra in ethanol was shifted from 412 to 509 nm after addition of formaldehyde. Fluorescence intensity of CHA gradually decreased with the increase of formaldehyde concentrations. Furthermore, paper strips loaded-CHA were fabricated and served to detect formaldehyde qualitatively. The detection limit of the CHA probe to formaldehyde is 0.2 M.

Keywords: Azine; chemosensor; colorimetric; fluorometric; formaldehyde; turn off

 

ABSTRAK

Terbitan azina CHA 6,6’-((1E,1’E)-hidrazina-1,2-diilidenebis(metanili-liden))bis(3,4-dimetoksi-anilin) telah disintesis dengan pemeluwapan 6-nitroveratraldehid dengan malononitril diikuti dengan pengurangan menggunakan 10% Pd/C dan hidrat hidrazina. Dengan kehadiran formaldehid, chemoderia CHA dalam etanol menunjukkan perubahan warna daripada kuning kepada merah yang boleh diperhatikan oleh mata kasar dan ‘mematikan’ jenis pemelindapan kependarfluoran dalam etanol. Fenomena ini disahkan oleh UV-vis, kependarfluoran dan spektroskopi 1H NMR. Spektrum CHA dalam etanol telah beralih daripada 412 kepada 509 nm selepas penambahan formaldehid. Keamatan kependarfluoran CHA secara beransur-ansur menurun dengan peningkatan kepekatan formaldehid. Tambahan pula, jalur kertas yang dimuatkan-CHA telah direka dan digunakan untuk mengesan formaldehid secara kualitatif. Had pengesanan prob CHA kepada formaldehid adalah 0.2 M.

Kata kunci: Azina; fluorometrik; formaldehid; kemoderia; kolorimetri; mematikan

RUJUKAN

Bi, A., Gao, T., Cao, X., Dong, J., Liu, M., Ding, N., Liao, W. & Zeng, W. 2018. A novel naphthalimide-based probe for ultrafast, highly selective and sensitive detection of formaldehyde. Sensors and Actuators, B: Chemical 255: 3292-3297.

Borase, P.N., Pranila, B.T. & Ganapati, S.S. 2016. Dihydroquinazolinone based ‘turn-off’ fluorescence sensor for detection of Cu2+ Ions. Dyes and Pigments 134: 276-284.

Caballero, A., Rosario, M., Vega, L., Imma, R., José, V., Klaus, W., Alberto, T., Pedro, M. & Jaume, V. 2005. Highly selective chromogenic and redox or fluorescent sensors of Hg 2+ in aqueous environment based on 1,4-disubstituted azines. Journal of the American Chemical Society 127(45): 15666-15667.

Chen, Y., Wei, S., Yonghai, H., Xinhua, S., Linxian, X., Lei, F. & Zhengfeng, X. 2015. A new highly selective fluorescent turn-on chemosensor for cyanide anion. Talanta 137: 38-42.

Cogliano, V.J., Yann, G., Robert, A.B., Kurt, S., Marie, B.S. & Fatiha, E.G. 2005. Meeting report: Summary of IARC monographs on formaldehyde, 2-butoxyethanol, and 1-tert-butoxy-2-propanol. Environmental Health Perspectives 88(9): 1205-1208.

Dar, A., Umer, S. & Jamil, A. 2013. A simple spot test quantification method to determine formaldehyde in aqueous samples. Journal of Saudi Chemical Society 20: S352-S356.

Dong, B., Xuezhen, S., Yonghe, T. & Weiying, L. 2016. A rapid and facile fluorimetric method for detecting formaldehyde. Sensors and Actuators, B: Chemical 222: 325-330.

He, L., Xueling, Y., Mingguang, R., Xiuqi, K., Yong, L. & Weiying, L. 2016. An ultra-fast illuminating fluorescent probe for monitoring formaldehyde in living cells, shiitake mushrooms, and indoors. Chemical Communication 52(61): 9582- 9585.

Hidayah, N., Purwono, B., Nurohmah, B.A. & Pranowo, H.D. 2019. Synthesis of pyridine derivative-based chemosensor for formaldehyde detection. Indonesian Journal of Chemistry 19(4): 1074-1080.

Indang, M.N., Abdulamir, A.S., Bakar, B.A., Salleh, A.B., Lee, Y.H. & Azah, N. 2009. A review: Methods of determination of health-endangering formaldehyde in diet. Research Journal of Pharmacology 3(2): 31-47.

Kaushik, R., Amrita, G., Ajeet, S. & Jose, A.D. 2018. Colorimetric sensor for the detection of H2S and its application in molecular half-subtractor. Analytica Chimica Acta 1040: 177-186.

Korpan, Y.I., Gonchar, M.V., Starodub, N.F., Shulga, A.A., Sibirny, A.A. & Elskaya, A.V. 1993. A cell biosensor specific for formaldehyde based on pH-sensitive transistors coupled to methylotrophic yeast cells with genetically adjusted metabolism. Analytical Biochemistry 215(2): 216-222.

Lewicki, J.P., Christina, A.F. & Marcus, A.W. 2015. On the synthesis and structure of resorcinol-formaldehyde polymeric networks-precursors to 3D-carbon macroassemblies. Polymer 69(1): 45-51.

Li, J., Junli, Z. & Lifang, Y. 2007. Determination of formaldehyde in squid by high- performance liquid chromatography. Asia Pacific Journal of Clinical Nutrition 16: 127-130.

Li, Q., Yiai, C., Hong, Y., Qi, L., Yuan, R.Z., Hui, L., You, M.Z. & Tai, B.W. 2015. A colorimetric and fluorescent cyanide chemosensor based on dicyanovinyl derivatives: Utilization of the mechanism of intramolecular charge transfer blocking. Spectrochimica Acta - Part A: Molecular and Biomolecular Spectroscopy 136: 1047-1051.

Li, Q., Yong, G., Jian, X. & Shijun, S. 2011. Salicylaldehyde based colorimetric and ‘turn on’ fluorescent sensors for fluoride anion sensing employing hydrogen bonding. Sensors and Actuators, B: Chemical 158(1): 427-431.

Li, Q., Piyanete, S. & Shoji, M. 2007. Development of novel reagent for Hantzsch reaction for the determination of formaldehyde by spectrophotometry and fluorometry. Analytical Sciences: The International Journal of the Japan Society for Analytical Chemistry 23(4): 413-417.

Liu, C., Caixia, S., Haixia, L., Weiwei, D., Zhanxian, L., Liuhe, W. & Mingming, Y. 2015. Nanomolar fluorescent quantitative detection of formaldehyde with a 8-hydroxyquinoline derivative in aqueous solution and electrospun nanofibers. Sensors and Actuators, B: Chemical 219: 185-191.

Martínez, R., Arturo, E., Alberto, T. & Pedro, M. 2005. New Hg2+ and Cu2+ selective chromo- and fluoroionophore based on a bichromophoric azine. Organic Letters 7(26): 5869-5872.

Merk, O. 1998. Significance of formaldehyde-induced DNA-protein crosslinks for mutagenesis. Environmental and Molecular Mutagenesis 32: 260-268.

Mohr, G.J. 2003. New chromoreactands for the detection of aldehydes, amines and alcohols. Sensors and Actuators, B: Chemical 90: 31-36.

Nikitina, O., Sergey, S., Galina, G., Olha, D., Mykhaylo, G., Lo, G., Elisabeth, C. & Mihaela, N. 2007. Bi-enzyme biosensor based on NAD+- and glutathione-dependent recombinant formaldehyde dehydrogenase and diaphorase for formaldehyde assay. Sensors and Actuators, B: Chemical 125(1): 1-9.

Ovianto, D., Sugiharta, I.B.A.R. & Purwono, B. 2017. Synthesis of 4-Phenyl-2,6-Bis (4-aminophenyl) pyridine compound and study of their fluorescence behaviour for formaldehyde sensing. International Journal of ChemTech Research. 10(9): 918-923.

Pei, P.X., Hu, J.H., Long, C. & Ni, P. 2018. A novel colorimetric and ‘turn-on’ fluorimetric chemosensor for selective recognition of CN- ions based on asymmetric azine derivatives in aqueous media. Spectrochimica Acta-Part A: Molecular and Biomolecular Spectroscopy 198: 182-187.

Peng, L., Zhou, Z., Wei, R., Li, K., Song, P. & Tong, A. 2014. A fluorescent probe for thiols based on aggregation-induced emission and its application in live-cell imaging. Dyes and Pigments 108: 24-31.

Roth, A., Li, H. & Anorma, C. 2015. A reaction-based fluorescent probe for imaging of formaldehyde in living cells. Journal of the American Chemical Society 1: 10-13.

Song, H., Rajendiran, S., Kim, N., Jeong, S.K., Koo, E., Park, G., Thangadurai, T.D. & Yoon, S. 2012. A tailor designed fluorescent ‘turn-on’ sensor of formaldehyde based on the BODIPY motif. Tetrahedron Letters 53(37): 4913-4916.

Suresh, M., Mandal, A.K., Saha, S., Suresh, E., Mandoli, A., Liddo, R.D., Parnigotto, P.P. & Das, A. 2010. Azine-based receptor for recognition of Hg2+ Ion: Crystallographic evidence and imaging application in live cells. Organic Letters 12(23): 5406-5409.

Tamami, B. & Yeganeh, H. 2001. Synthesis and characterization of novel aromatic polyamides derived from 4-Aryl-2,6-Bis(4- Aminophenyl) pyridines. Polymer 42(2): 415-420.

Wei, K., Ma, L., Ma, G., Ji, C. & Yin, M. 2019. A two-step responsive colorimetric probe for fast detection of formaldehyde in weakly acidic environment. Dyes and Pigments 165: 294-300.

Wu, Y., Zheng, Z., Wen, J., Li, H., Sun, S. & Xu, Y. 2018. Imaging of formaldehyde in live cells and plants utilizing small molecular probes with large stokes shifts. Sensors and Actuators, B: Chemical 260: 937-944.

Xu, J., Zhang, Y., Zeng, L., Liu, J., Kinsella, J.M. & Sheng, R. 2016. Talanta a simple naphthalene-based Fl uorescent probe for high selective detection of formaldehyde in toffees and HeLa cells via aza-cope reaction. Talanta 160: 645-652.

Yeh, T.S., Lin, T.C., Chen, C.C. & Wen, H.M. 2013. Analysis of free and bound formaldehyde in squid and squid products by gas chromatography-mass spectrometry. Journal of Food and Drug Analysis 21(2): 190-197.

Zhang, D., Liu, D., Li, M., Yang, Y., Wang, Y., Yin, H., Liu, J., Jia, B. & Wu, X. 2018. A simple pyrene-based fluorescent probe for highly selective detection of formaldehyde and its application in live-cell imaging. Analytica Chimica Acta 1033: 180-184.

Zhou, W., Dong, H., Yan, H., Shi, C. & Yu, M. 2015. HCHO-reactive molecule with dual-emission-enhancement property for quantitatively detecting HCHO in near 100% water solution. Sensors & Actuators: B. Chemical 209: 664-669.

Zhou, Y., Yan, J., Zhang, N., Li, D., Xiao, S. & Zheng, K. 2018. A ratiometric fluorescent probe for formaldehyde in aqueous solution, serum and air using aza-cope reaction. Sensors and Actuators, B: Chemical 258: 156-162.

 

*Pengarang untuk surat-menyurat; email: purwono.bambang@ugm.ac.id

 

 

 

 

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