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2018
P. Deb, Jin, G. Young, Singh, S. K., Moon, J., Kwon, H., Das, A., Bagchi, S., and Kim, Y. Sam, Interconverting hydrogen-bonding and weak n -> pi* interactions in aqueous solution: A direct spectroscopic evidence, Journal of Physical Chemistry Letters, vol. 9, no. 18, pp. 5425-5429, 2018.
F. Chekin, Bagga, K., Subramanian, P., Jijie, R., Singh, S. K., Kurungot, S., Boukherroub, R., and Szunerits, S., Nucleic aptamer modified porous reduced graphene oxide/MoS2 based electrodes for viral detection: application to human papillomavirus (HPV), Sensors and Actuators B-Chemical, vol. 262, pp. 991-1000, 2018.
A. Vasilescu, Ye, R., Boulahneche, S., Lamraoui, S., Jijie, R., Medjram, M. Salah, Gaspar, S., Singh, S. K., Kurungot, S., Melinte, S., Boukherroub, R., and Szunerits, S., Porous reduced graphene oxide modified electrodes for the analysis of protein aggregation. Part 2: Application to the analysis of calcitonin containing pharmaceutical formulation, Electrochimica Acta, vol. 266, pp. 364-372, 2018.
J. Liu, Xiong, R., Brans, T., Lippens, S., Parthoens, E., Zanacchi, F. Cella, Magrassi, R., Singh, S. K., Kurungot, S., Szunerits, S., Bove, H., Ameloot, M., Fraire, J. C., Teirlinck, E., Samal, S. Keshari, De Rycke, R., Houthaeve, G., De Smedt, S. C., Boukherroub, R., and Braeckmans, K., Repeated photoporation with graphene quantum dots enables homogeneous labeling of live cells with extrinsic markers for fluorescence microscopy, Light-Science & Applications, vol. 7, p. 47, 2018.
F. Chekin, Vasilescu, A., Jijie, R., Singh, S. K., Kurungot, S., Iancu, M., Badea, G., Boukherroub, R., and Szunerits, S., Sensitive electrochemical detection of cardiac troponin I in serum and saliva by nitrogen-doped porous reduced graphene oxide electrode, Sensors and Actuators B-Chemical, vol. 262, pp. 180-187, 2018.
J. V. S. Krishna, Krishna, N. Vamsi, Singh, S. K., Shaw, P. K., Dhavale, V. M., Vardhaman, A. Kumar, and Giribabu, L., Substituent‐induced deformed ni–porphyrin as an electrocatalyst for the electrochemical conversion of water into dioxygen, European Journal of Inorganic Chemistry, vol. 14, pp. 1549-1555, 2018.
2017
V. Kashyap, Singh, S. K., and Kurungot, S., Activity tuning of cobalt ferrite nanoparticles anchored on N-doped reduced graphene oxide as a potential oxygen reduction electrocatalyst by Zn substitution in the spinel matrix, Chemistry Select, vol. 2, no. 26, pp. 7845-7853, 2017.
S. Boulahneche, Jijie, R., Barras, A., Chekin, F., Singh, S. K., Bouckaert, J., Medjram, M. Salah, Kurungot, S., Boukherroub, R., and Szunerits, S., On demand electrochemical release of drugs from porous reduced graphene oxide modified flexible electrodes, Journal of Materials Chemistry B, vol. 5, no. 32, pp. 6557-6565, 2017.
S. K. Singh, Kashyap, V., Manna, N., Bhange, S. N., Soni, R., Boukherroub, R., Szunerits, S., and Kurungot, S., Efficient and durable oxygen reduction electrocatalyst based on CoMn alloy oxide nanoparticles supported over N-doped porous graphene, ACS Catalysis, vol. 7, no. 10, pp. 6700-6710, 2017.
F. Halouane, Oz, Y., Meziane, D., Barras, A., Juraszek, J., Singh, S. K., Kurungot, S., Shaw, P. K., Sanyal, R., Boukherroub, R., Sanyal, A., and Szunerits, S., Magnetic reduced graphene oxide loaded hydrogels: highly versatile and efficient adsorbents for dyes and selective Cr(VI) ions removal, Journal of Colloid and Interface Science, vol. 507, pp. 360-369, 2017.
V. M. Dhavale, Singh, S. K., Nadeema, A., Gaikwad, S. S., and Kurungot, S., Nanocrystalline Fe-Fe2O3 particledeposited N-doped graphene as an activity-modulated Pt-free electrocatalyst for oxygen reduction reaction, Nanoscale, vol. 9, no. 35, pp. 13341-13342, 2017.
K. K. Mishra, Singh, S. K., Ghosh, P., Ghosh, D., and Das, A., Nature of selenium hydrogen bonding: gas phase spectroscopy and quantum chemistry calculations, Physical chemistry Chemical physics, vol. 19, no. 35, pp. 24179-24187, 2017.
A. Vasilescu, Boulahneche, S., Chekin, F., Gaspar, S., Medjram, M. Salah, Diagne, A. Aziz, Singh, S. K., Kurungot, S., Boukherroub, R., and Szunerits, S., Porous reduced graphene oxide modified electrodes for the analysis of protein aggregation. part 1: lysozyme aggregation at pH 2 and 7.4, Electrochimica Acta, vol. 254, pp. 375-383, 2017.
F. Halouane, Jijie, R., Meziane, D., Li, C., Singh, S. K., Bouckaert, J., Jurazek, J., Kurungot, S., Barras, A., Li, M., Boukherroub, R., and Szunerits, S., Selective isolation and eradication of E. coli associated with urinary tract infections using anti-fimbrial modified magnetic reduced graphene oxide nanoheaters, Journal of Materials Chemistry B, vol. 5, no. 40, pp. 8133-8142, 2017.