biblio

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Journal Article
J. Bera, Betal, A., Sharma, A., Shankar, U., Rath, A. Kumar, and Sahu, S., CdSe quantum dot-based nanocomposites for ultralow-power memristors, ACS Applied Nano Materials, vol. 5, no. 6, pp. 8502-8510, 2022.
J. Bera, Betal, A., Sharma, A., Rath, A. Kumar, and Sahu, S., Colloidal MoS2 quantum dots for high-performance low power resistive memory devices with excellent temperature stability, Applied Physics Letters, vol. 120, no. 25, p. 253502, 2022.
A. Kumar Rath and Pal, A. J., Conductance switching in an organic material: from bulk to monolayer, Langmuir, vol. 23, no. 19, pp. 9831-9835, 2007.
A. Kumar Rath, Lasanta, T., Bernechea, M., Diedenhofen, S. L., and Konstantatos, G., Determination of carrier lifetime and mobility in colloidal quantum dot films via impedance spectroscopy, Applied Physics Letters, vol. 104, no. 6, p. 063504, 2014.
A. Kumar Rath, Sahu, S., and Pal, A. J., Electrical bistability in a xanthene class molecule: conduction mechanisms, Applied Physics Letters, vol. 89, p. Article No: 142110, 2006.
A. Stavrinadis, Rath, A. Kumar, F. de Arquer, P. Garcia, Diedenhofen, S. L., Magen, C., Martinez, L., So, D., and Konstantatos, G., Heterovalent cation substitutional doping for quantum dot homojunctions, Nature Communications, vol. 4, p. Article number: 2981, 2013.
A. Guchhait, Rath, A. Kumar, and Pal, A. J., Hybrid core-shell nanoparticles: photoinduced electron-transfer for charge separation and solar cell application, Chemistry of Materials, vol. 21, no. 21, pp. 5292–5299, 2009.
A. Mihi, Beck, F. J., Lasanta, T., Rath, A. Kumar, and Konstantatos, G., Imprinted electrodes for enhanced light trapping in solution processed solar cells, Advanced Materials, vol. 26, no. 3, pp. 443–448, 2013.
A. Kumar Rath and Pal, A. J., Induce negative differential resistance in organic devices through a ferroelectric polymer, Organic Electronics, vol. 10, no. 6, pp. 1116–1119, 2009.
A. Kumar Rath, Bhaumik, S., and Pal, A. J., Mn-doped nanocrystals in light-emitting diodes: energy-transfer to obtain electroluminescence from quantum dots, Applied Physics Letters, vol. 97, no. 11, p. Article number: 113502, 2010.
A. Kumar Rath, Dhara, K., Banerjee, P., and Pal, A. J., Nanowires of metal-organic complex by photocrystallization: a system to achieve addressable electrically bistable devices and memory elements, Langmuir, vol. 24, no. 11, pp. 5937–5941, 2008.
A. Guchhait, Rath, A. Kumar, and Pal, A. J., Near-IR activity of hybrid solar cells: enhancement of efficiency by dissociating excitons generated in PbS nanoparticles, Applied Physics Letters, vol. 96, no. 7, p. Article no: 073505, 2010.
A. Kumar Rath and Pal, A. J., Organic memory and electrical bistability in a quinone –based charge transfer complex, Proceedings of the IEEE, vol. 97, no. 9, 2009.
S. Reddy Tulsani and Rath, A. Kumar, Photo-induced surface modification to improve the performance of lead sulfide quantum dot solar, Journal of Colloid and Interface Science, vol. 522, pp. 120-125, 2018.
A. Kumar Rath, F. de Arquer, P. Garcia, Stavrinadis, A., Lasanta, T., Bernechea, M., Diedenhofen, S. L., and Konstantatos, G., Remote trap passivation in colloidal quantum dot bulk nano-heterojunctions and its effect in solution-processed solar cells, Advanced Materials, vol. 26, no. 27, p. 4741+, 2014.
A. Kumar Rath and Pal, A. J., Resistive switching in rose bengal and other xanthene molecules is a molecular phenomenon, Organic Electronics, vol. 9, no. 4, pp. 495–500, 2008.
A. Kumar Rath, Bernechea, M., Martinez, L., and Konstantatos, G., Solution-processed heterojunction solar cells based on p-type PbS quantum dots and n-type Bi2S3 nanocrystals, Advanced Materials, vol. 23, no. 32, pp. 3712–3717, 2011.
A. Kumar Rath, Bernechea, M., Martinez, L., F. de Arquer, P. Garcia, Osmond, J., and Konstantatos, G., Solution-processed inorganic bulk nano-heterojunctions and their application to solar cells, Nature Photonics, vol. 6, no. 8, pp. 529–534, 2012.
A. Guchhait, Rath, A. Kumar, and Pal, A. J., To make polymer: quantum dot hybrid solar cells NIR-active by increasing diameter of PbS nanoparticles, Solar Energy Materials and Solar Cells, vol. 95, no. 2, pp. 651–656, 2011.