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金属颜料对保温涂料发射性和反射性的影响 被引量:14
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作者 张永娟 沈中林 张雄 《同济大学学报(自然科学版)》 EI CAS CSCD 北大核心 2013年第12期1855-1860,共6页
基于高原、严寒及寒冷地区对外墙涂料光学性能的要求,研究涂料组分中各类金属颜料对其红外发射率及太阳能反射比的影响.研究结果表明:金属颜料能显著降低油性涂料的红外发射率;颜料种类、掺量及形貌对涂料的发射率有较大影响;铜粉对油... 基于高原、严寒及寒冷地区对外墙涂料光学性能的要求,研究涂料组分中各类金属颜料对其红外发射率及太阳能反射比的影响.研究结果表明:金属颜料能显著降低油性涂料的红外发射率;颜料种类、掺量及形貌对涂料的发射率有较大影响;铜粉对油性涂料发射率的降低效果最好;发射率随颜料掺量的增加而降低,在40%~50%范围内达到最低;同掺量下片状铜粉在油性涂层中的效果优于球状的;漂浮型铝颜料对油性涂料发射率的降低效果优于非漂浮型铝颜料.水溶性金属铝粉能显著降低水性涂料的红外发射率,红外发射率和太阳能反射比均随铝粉的粒径增大而下降.上述各类涂料涂层的红外发射率均可达到0.35~0.45、太阳能反射比为0.39~0.56,基本符合采暖地区外墙涂料光学性能的要求. 展开更多
关键词 保温涂料 金属颜料 红外发射率 低太阳能反 射比
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Fabrication of Large Area High Density, Ultra-Low Reflection Silicon Nanowire Arrays for Efficient Solar Cell Applications 被引量:6
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作者 Subramani Thiyagu B. Parvathy Devi Zingway Pei 《Nano Research》 SCIE EI CAS CSCD 2011年第11期1136-1143,共8页
High density vertically aligned and high aspect ratio silicon nanowire (SiNW) arrays have been fabricated on a Si substrate using a template and a catalytic etching process. The template was formed from polystyrene ... High density vertically aligned and high aspect ratio silicon nanowire (SiNW) arrays have been fabricated on a Si substrate using a template and a catalytic etching process. The template was formed from polystyrene (PS) nanospheres with diameter 30-50 nm and density 10^10/cm^2, produced by nanophase separation of PS-containing block-copolymers. The length of the SiNWs was controlled by varying the etching time with an etching rate of 12.5 nm/s. The SiNWs have a biomimetic structure with a high aspect ratio (-100), high density, and exhibit ultra-low reflectance. An ultra-low reflectance of approximately 0.1% was achieved for SiNWs longer than 750 nm. Well-aligned SiNW/poly(3,4-ethylenedioxy-thiophene):poly(styrenesulfonate) (PEDOT:PSS) heterojunction solar cells were fabricated. The n-type silicon nanowire surfaces adhered to PEDOT:PSS to form a core-sheath heterojunction structure through a simple and efficient solution process. The large surface area of the SiNWs ensured efficient collection of photogenerated carriers. Compared to planar cells without the nanowire structure, the SiNW/PEDOT:PSS heterojunction solar cell exhibited an increase in short-circuit current density from 2.35 mA/cm^2 to 21.1 mA/cm^2 and improvement in power conversion efficiency from 0.4% to 5.7%. 展开更多
关键词 Ultra-low reflection silicon nanowire polystyrene nanosphere heterojunction solar cell
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