1 |
Advances in applications of nanostructured silicon as a new multifunctional material Melnichenko MM, Svezhentsova KV Molecular Crystals and Liquid Crystals, 698(1), 1, 2020 |
2 |
Advances in applications of nanostructured silicon as a new multifunctional material Melnichenko MM, Svezhentsova KV Molecular Crystals and Liquid Crystals, 698(1), 1, 2020 |
3 |
Clay minerals derived nanostructured silicon with various morphology: Controlled synthesis, structural evolution, and enhanced lithium storage properties Chen QZ, Liu SH, Zhu RL, Wu DC, Fu HY, Zhu JX, He HP Journal of Power Sources, 405, 61, 2018 |
4 |
Electrochemical characterization of carbon coated bundle-type silicon nanorod for anode material in lithium ion secondary batteries Halim M, Kim JS, Choi JG, Lee JK Applied Surface Science, 334, 115, 2015 |
5 |
Nanostructured silicon p-layer obtained by radio frequency power profiling process for high-efficiency amorphous silicon solar cell Hou GF, Fang J, Fan QH, Wei CC, Ni J, Zhang XD, Zhao Y Solar Energy Materials and Solar Cells, 134, 395, 2015 |
6 |
Nanostructured silicon spheres prepared by a controllable magnesiothermic reduction as anode for lithium ion batteries Xie J, Wang GQ, Huo Y, Zhang SC, Cao GS, Zhao XB Electrochimica Acta, 135, 94, 2014 |
7 |
Contact-Engineered and Void-Involved Silicon/Carbon Nanohybrids as Lithium-Ion-Battery Anodes Wang B, Li XL, Zhang XF, Luo B, Zhang YB, Zhi LJ Advanced Materials, 25(26), 3560, 2013 |
8 |
Modeling the influence of the porosity of laser-ablated silicon films on their photoluminescence properties Meunier M, Bernier JS, Sylvestre JP, Kabashin AV Applied Surface Science, 254(9), 2771, 2008 |
9 |
Dielectric relaxation in nanopillar NiFe-silicon structures in high magnetic fields Vasic R, Brooks JS, Jobiliong E, Aravamudhan S, Luongo K, Bhansali S Current Applied Physics, 7(1), 34, 2007 |
10 |
The effect of oxidation on physical properties of porous silicon layers for optical applications Pirasteh P, Charrier J, Soltani A, Haesaert S, Haji L, Godon C, Errien N Applied Surface Science, 253(4), 1999, 2006 |