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钛金属薄膜上两种短链自组装分子膜的制备与摩擦特性 被引量:2
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作者 孙昌国 张会臣 高玉周 《材料研究学报》 EI CAS CSCD 北大核心 2009年第1期6-12,共7页
采用自组装技术在钛金属薄膜上制备了两种分子链长相同、官能团不同的自组装分子膜,并对其进行了不同时间的紫外照射.对钛金属薄膜和自组装分子膜进行了表征和摩擦特性测试,研究了紫外照射、官能团、滑动速度和载荷对自组装分子膜摩擦... 采用自组装技术在钛金属薄膜上制备了两种分子链长相同、官能团不同的自组装分子膜,并对其进行了不同时间的紫外照射.对钛金属薄膜和自组装分子膜进行了表征和摩擦特性测试,研究了紫外照射、官能团、滑动速度和载荷对自组装分子膜摩擦特性的影响.结果表明:通过紫外照射钛金属薄膜表面羟基化、自组装分子水解及自组装分子缩合可在钛金属薄膜上制备结构致密的自组装分子膜.制备的两种短链自组装分子膜可降低钛金属薄膜的摩擦特性,APS自组装分子膜的摩擦特性优于MPS自组装分子膜的摩擦特性.紫外照射5 min的自组装分子膜表面吸附的有机杂质被蒸发掉.对针尖的黏着力减小,从而导致针尖的变形减小,摩擦力最低.而紫外照射15 min的自组装分子膜致密的网状结构被破坏,减弱了自组装分子膜的润滑效应.两种自组装分子膜的摩擦力随着滑动速度的增加略呈上升趋势,随着载荷的增加略呈下降趋势,但是变化不大. 展开更多
关键词 有机高分子材料 材料表面与界面 摩擦 自组装单分子膜 钛金属薄膜
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钛薄膜阳极氧化制备纳米孔结构TiO_2 被引量:3
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作者 齐艳玲 朱艳兵 +1 位作者 刘子庚 王为 《电镀与精饰》 CAS 2008年第10期1-3,共3页
采用物理气相沉积的方法,以导电玻璃为基材沉积金属Ti薄膜,并将其作为阳极,在1%HF溶液中恒压阳极氧化,制备了具有纳米孔阵列结构的TiO2薄膜。研究表明,形成的TiO2薄膜具有多孔结构,微孔均为贯穿孔,孔形基本为圆形,孔径均匀,孔径大约为50... 采用物理气相沉积的方法,以导电玻璃为基材沉积金属Ti薄膜,并将其作为阳极,在1%HF溶液中恒压阳极氧化,制备了具有纳米孔阵列结构的TiO2薄膜。研究表明,形成的TiO2薄膜具有多孔结构,微孔均为贯穿孔,孔形基本为圆形,孔径均匀,孔径大约为50 nm。在15℃溶液中阳极氧化相同时间制备的TiO2氧化膜的厚度显著大于25℃溶液制备的氧化膜厚度。TiO2氧化膜的厚度随着阳极氧化时间的延长而增加。 展开更多
关键词 物理气相沉积 金属薄膜 阳极氧化 TiO2纳米孔阵列
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Tradeoffbetween Narrowing Optical Band Gap and Enhancing Electrical Conductivity of the Metal Nanoparticles-Modified Titanium Oxide Films
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作者 Aung Chan Thar Thaung Hlaing Win +1 位作者 Nyein Wint Lwin Than Zaw Oo 《Journal of Physical Science and Application》 2015年第3期220-225,共6页
The n-type semiconducting titanium oxide thin films are well-known as electron transporting interlayer in photovoltaic cells. The favorable characteristics of interlayers in photovoltaics are high optical transmittan... The n-type semiconducting titanium oxide thin films are well-known as electron transporting interlayer in photovoltaic cells. The favorable characteristics of interlayers in photovoltaics are high optical transmittance (T%), wide band gap energy (Eg) and high electrical conductivity (σ). Modifying titanium oxide films with metal nanoparticles would increase electrical conductivity but reduce optical band gap energy. We developed the sol-gel derived titanium suboxide (TiOx) films modified with silver (Ag) or gold (Au) or copper (Cu) nanoparticles (NPs). This study explores a tradeoff between narrowing optical band gap and enhancing electrical conductivity of nanostructured TiOx films by controlling the Au- or Ag- or Cu-NPs loading concentrations (mol%) in titania. The Au- and Cu-NPs loading concentration of 4 mol% should meet a tradeoff which yields the higher T%, wider Eg and higher compared to those of pure TiOx films. In addition, since the pure Cu is not thermodynamically stable in ambience as compared to Au and Ag, the stability of as-obtained colloidal CuNPs is also examined. A careful examination of the time evolution of surface plasmon resonance (SPR) bands of CuNPs indicates that their stability is only up to 4 h. 展开更多
关键词 Titanium suboxide metal nanoparticles electrical conductivity band gap energy.
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Anionic surfactant anchoring enables 23.4%efficient and stable perovskite solar cells 被引量:2
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作者 Tao Wang Tianshi Ye +8 位作者 Liang Qiao Weiyu Kong Fang Zeng Yao Zhang Ruitian Sun Lin Zhang Han Chen Rongkun Zheng Xudong Yang 《Science China Materials》 SCIE EI CAS CSCD 2022年第12期3361-3367,共7页
Nonradiative recombination losses at defects in metal halide perovskite films are responsible for hindering the improvement of the photovoltaic performance and stability of perovskite solar cells(PSCs).Here,we report ... Nonradiative recombination losses at defects in metal halide perovskite films are responsible for hindering the improvement of the photovoltaic performance and stability of perovskite solar cells(PSCs).Here,we report a feasible multifunctional additive strategy that uses cesium stearate to passivate defects in perovskite films and simultaneously enhances the tolerance to light and moisture stress.Nonradiative recombination losses are effectively suppressed in target films that exhibit improved crystallinity,low trap-state density,and enhanced carrier separation and transportation.The present strategy hence boosts the power conversion efficiency of the pi-n structured PSC to 23.41%.Our device also shows good stability in ambient air without encapsulation,maintaining 91.6%of the initial efficiency after 720 h. 展开更多
关键词 perovskite solar cells cesium stearate crystallization PASSIVATION stability
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