Articles | Volume 7, issue 3
https://doi.org/10.5194/amt-7-689-2014
https://doi.org/10.5194/amt-7-689-2014
Research article
 | 
04 Mar 2014
Research article |  | 04 Mar 2014

Sub-3 nm particle size and composition dependent response of a nano-CPC battery

J. Kangasluoma, C. Kuang, D. Wimmer, M. P. Rissanen, K. Lehtipalo, M. Ehn, D. R. Worsnop, J. Wang, M. Kulmala, and T. Petäjä

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Cited articles

Aalto, P., Hameri, K., Becker, E., Weber, R., Salm, J., Makela, J. M., Hoell, C., O'Dowd, C. D., Karlsson, H., Hansson, H. C., Vakeva, M., Koponen, I. K., Buzorius, G., and Kulmala, M.: Physical characterization of aerosol particles during nucleation events, Tellus B, 53, 344–358, https://doi.org/10.1034/j.1600-0889.2001.530403.x, 2001.
Berndt, T., Jokinen, T., Mauldin, R. L., Petaja, T., Herrmann, H., Junninen, H., Paasonen, P., Worsnop, D. R., and Sipila, M.: Gas-phase ozonolysis of selected olefins: the yield of stabilized Criegee intermediate and the reactivity toward SO2, J. Phys. Chem. Lett., 3, 2892–2896, https://doi.org/10.1021/Jz301158u, 2012.
Bzdek, B. R., Zordan, C. A., Luther, G. W., and Johnston, M. V.: Nanoparticle chemical composition during new particle formation, Aerosol. Sci. Tech., 45, 1041–1048, https://doi.org/10.1080/02786826.2011.580392, 2011.
Chen, D. R., Pui, D. Y. H., and Kaufman, S. L.: Electrospraying of conducting liquids for monodisperse aerosol generation in the 4 nm to 1.8 μm diameter range, J. Aerosol. Sci., 26, 963–977, https://doi.org/10.1016/0021-8502(95)00027-A, 1995.
Chen, D. R., Pui, D. Y. H., Hummes, D., Fissan, H., Quant, F. R., and Sem, G. J.: Design and evaluation of a nanometer aerosol differential mobility analyzer (Nano-DMA), J. Aerosol. Sci., 29, 497–509, https://doi.org/10.1016/S0021-8502(97)10018-0, 1998.
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