[1] S. Chen, J.W. van Nieuwkasteele, A. van den Berg, J.C.T. Eijkel, Ion-step method for surface potential sensing of silicon nanowires, Analytical Chemistry, accepted. DOI: 10.1021/acs.analchem.6b02230.(SCI影响因子5.886)
[2] D. Narezo-Guzman, Y. Xie, S. Chen, D. Fernndez Rivas, C. Sun, D. Lohse, G. Ahlers, Heat-flux enhancement by vapour-bubble nucleation in Rayleigh-Benard turbulence, Journal of Fluid Mechanics, 787, 331-366, 2016. (SCI影响因子2.383)
[3] S. Chen, A. van den Berg, E.T.Carlen, Sensitivity and detection limit analysis of silicon nanowire bio(chemical)sensors, Sensors & Actuators: B. Chemical, 209, 486-489, 2015. (SCI影响因子4.097)
[4] S. Chen, Y. Xie, A. De, A. van den Berg, E.T.Carlen, Electrical shielding for silicon nanowire biosensor in microchannels, Applied Physics Letters, 103, 173702, 2013. (SCI影响因子3.302)
[5] S. Chen, J.G. Bomer, E.T. Carlen, A. van den Berg, Al2O3/Silicon nanoISFET with near ideal Nernstian response, Nano Letters, 11, 2334-2341, 2011. (SCI影响因子13.592)
[6] M. Masood, S. Chen, E.T. Carlen, A. van den Berg, All-(111) Surface Silicon Nanowires: Selective Functionalization for Biosensing Applications, ACS Applied Materials & Interfaces, 2, 3422-3428, 2010. (SCI影响因子6.723)
[7] S. Chen, J.G. Bomer, W.G. van der Wiel, E.T. Carlen, A. van den Berg, Top-down fabrication of sub-30 nm monocrystalline silicon nanowires using conventional microfabrication, ACS Nano, 3, 3485-3492, 2009. (SCI影响因子12.881)
[8] H.D. Tong, S. Chen, W.G. van der Wiel, E.T. Carlen, A. van den Berg, Novel top-down wafer-scale fabrication of single crystal silicon nanowires, Nano Letters, 9, 1015-1022, 2009. (SCI影响因子13.592)