表面等离子材料: 1. Enhanced plasmon radiative intensity from Ag nanoparticles coupled to a graphene sheet. Applied Physics Letters 108, 153113 (2016). 2. Photoluminescence of Ag/Sn quasi-core/shell nanoparticles. Proceedings of SPIE 10028, 1002808 (2016). 3. Coupling of single quantum emitters to plasmons propagating on mechanically etched wires. Optics Letters 38, 3838 (2013). 4. Propagation of plasmons in designed single crystalline silver nanostructures. Optics Express 20, 24614 (2012). 太阳能电池材料: 5. Uniform, Stable, and Efficient Planar-Heterojunction Perovskite Solar Cells by Facile Low-Pressure Chemical Vapor Deposition under Fully Open-Air Conditions. ACS Applied Materials & Interfaces 7, 2708 (2015). 6. A simple in situ tubular chemical vapor deposition processing of large-scale efficient perovskite solar cells and the research on their novel roll-over phenomenon in J-V curves. Journal of Materials Chemistry A 3, 12443 (2015). 7. Si nanoparticle interfaces in Si/SiO2 solar cell materials. Journal of Applied Physics 114, 164316 (2013). 硅基纳米发光材料: 8. High Er3+ luminescent efficiency in Er-doped SiOx films containing amorphous Si nanodots. Journal of Alloys and Compounds 676, 428 (2016). 9. Er sensitization by a thin Si layer: Interaction-distance dependence. Physical Review B 84, 085403 (2011). 10. Erbium diffusion in silicon dioxide. Applied Physics Letters 97, 141903 (2010). 11. Thermalization of exciton states in silicon nanocrystals. Applied Physics Letters 95, 183107 (2009). 12. Silicon nanodisks via a chemical route. Chemistry of Materials 20, 3892 (2008). 13. Formation and luminescent properties of face-centered-cubic Si nanocrystals in silica matrix by magnetron sputtering with substrate bias. Applied Physics Letters 90, 241910 (2007). 14. Face-centered-cubic Si nanocrystals prepared by microsecond pulsed laser ablation. Journal of Applied Physics 102, 013518 (2007). 15. Influence of surface Si-Ag bonds on photoluminescence of porous silicon. Journal of Applied Physics 100, 063512 (2006). 16. Improvement of photoluminescence properties of porous silicon by silica passivation. Applied Surface Science 252, 4161 (2006). 17. Microporous silicon connected with silicon wires. Semiconductor Science and Technology 21, 498 (2006). 18. Improved visible photoluminescence from porous silicon with surface Si-Ag bonds. Applied Physics Letters 86, 171905 (2005). |