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131.
We develop a double-layer p-type hydrogenated nanocrystalline silicon (p-nc-Si:H) structure consisting of a low hydrogen diluted i/p buffer layer and a high hydrogen diluted p-layer to improve the hydrogenated amorphous silicon (a-Si:H) n-i-p solar cells. The electrical, optical and structural properties of p-nc-Si:H films with different hydrogen dilution ratio (RH) are investigated. High conductivity, low activation energy and wide band gap are achieved for the thin films. Raman spectroscopy and high-resolution transmission electron microscopy (HRTEM) analyses indicate that the thin films contain nanocrystallites with grain size around 3-5 nm embedded in the amorphous silicon matrix. By inserting a p-nc-Si:H buffer layer at the i/p interface, the overall performance of the solar cell is improved significantly compared to the bufferless cell. The improvement is correlated with the reduction of the density of defect states at the i/p interface.  相似文献   
132.
133.
本文采用还原氛下的高温固相法合成了荧光粉Sr5(PO4)3F∶ Eu2+并对其性能进行了表征,同时研究了助熔剂硼酸对该荧光粉的影响.结果 表明:在1200℃还原氛下制得的荧光粉Sr5(PO4)3F∶ Eu2+,激发峰位于418 nm,发射峰位于524 nm,是能与近紫外光LED相匹配的蓝绿色荧光粉.Eu2的最佳掺杂浓度为15mo1;,对应的色坐标为(0.2871,0.4036).添加助熔剂H3BO3可以使荧光粉Sr5(PO4)3F∶Eu2+的合成温度由1200℃降低到1100℃,最佳掺杂浓度为5wt;,同时可以增加荧光粉的发光强度.  相似文献   
134.
首先加工了一套仿钻石样品,通过送检到可溯源到国家基准的计量检定部门测试,用其测试结果验证比例仪的结果可靠性,达到间接溯源的目的.并对测试结果的不确定度进行详细计算.实验表明该方法简便可行,成本也较低.进而形成了一种用于钻石切工溯源的方法,并制定了标准指导溯源工作.使钻石切工分级真正统一到国家基标准.  相似文献   
135.
在HIT太阳电池非晶硅沉积过程中,单晶硅衬底的绒面金字塔沟壑处易发生外延生长,影响电池输出性能.采用碱性体系(NaClO溶液)对硅片进行绒面形貌修饰,在NaOH的各向异性刻蚀和NaClO的氧化作用下,金字塔结构由尖锐的四面体向较圆滑的“锥形”转变,尤其金字塔底部变得平滑.随着形貌修饰时间的增加,样品表面平均反射率呈线性增大,从未修饰样品的12.48;升高至13.79;,钝化后硅片少子寿命显著提升,绒面形貌修饰有效改善了界面钝化质量,中长波外量子效率提升,从而实现电池电性能的提升.样品绒面形貌修饰45 min后,开路电压从656.3 mV升高至699.8 mV,转换效率提高1.8;.此外,研究了反应温度对表面形貌修饰及HIT太阳电池性能的影响,基于70℃、10; NaClO溶液、45 min的绒面修饰条件下制备的HIT太阳电池转换效率达到最高,为12.02;.  相似文献   
136.
    
Modulation of the microenvironment on the electrode surface is one of the effective means to improve the efficiency of electrocatalytic carbon dioxide reduction (eCO2RR). To achieve high conversion rates, the phase boundary at the electrode surface should be finely controlled to overcome the limitation of CO2 solubility in the aqueous electrolyte. Herein, we developed a simple and efficient method to structure electrocatalyst with a superhydrophobic surface microenvironment by one-step co-electrodeposition of Cu and polytetrafluoroethylene (PTFE) on carbon paper. The super-hydrophobic Cu-based electrode displayed a high ethylene (C2H4) selectivity with a Faraday efficiency (FE) of 67.3 % at −1.25 V vs. reversible hydrogen electrode (RHE) in an H-type cell, which is 2.5 times higher than a regular Cu electrode without PTFE. By using PTFE as a surface modifier, the activity of eCO2RR is enhanced and water (proton) adsorption is inhibited. This strategy has the potential to be applied to other gas-conversion electrocatalysts.  相似文献   
137.
合成了掺氟汞基铜酸盐超导体 .研究证明氟进入了 1 2 2 3相 ,占据元胞中O( 3)的晶格位置 .掺氟烧结而不退火样品的超导临界温度Tc 为 1 33.8K ,比不掺氟烧结标准样品的Tc 提高约 2 2K ,显示氟掺杂能够使样品中载流子浓度nh 不经退火一步接近最佳值 .F代O( 3)收缩了CuO2 面与电荷储存层间距离及氟的电负性比氧大是提高Tc 的主要原因 .  相似文献   
138.
To improve the photocatalytic properties of coordination polymers under irradiation in the visible‐light region, coordination polymer nanobelts (CPNB) were loaded on functional carbon fiber (FCF) through the use of a simple colloidal blending process. The resulting coordination polymer nanobelt loaded functional carbon fiber composite material (CPNB/FCF) exhibited dramatically improved photocatalytic activity for the degradation of rhodamine B (RhB) under visible‐light irradiation. Optical and electrochemical methods illustrated the enhanced photocatalytic activity of CPNB/FCF originated from high separation efficiency of photogenerated electrons and holes on the interface of CPNB and FCF, which was produced by the synergy effect between them. In the composite material, the role of FCF could be described as photosensitizer and good electron transporter. For FCF, the number of functional groups on its surface has a significant influence on the photocatalytic performance of the resulting CPNB/FCF composite material, and an ideal FCF carrier was obtained as a highly efficient CPNB/FCF photocatalyst. CPNB/FCF showed outstanding stability during the degradation of rhodamine B (RhB); thus, the material is suitable for use as a photocatalyst in the treatment of organic dyes in water.  相似文献   
139.
Highly conductive, crystalline, polymer electrolytes, β‐cyclodextrin (β‐CD)–polyethylene oxide (PEO)/LiAsF6 and β‐CD–PEO/NaAsF6, were prepared through supramolecular self‐assembly of PEO, β‐CD, and LiAsF6/NaAsF6. The assembled β‐CDs form nanochannels in which the PEO/X+ (X=Li, Na) complexes are confined. The nanochannels provide a pathway for directional motion of the alkali metal ions and, at the same time, separate the cations and the anions by size exclusion.  相似文献   
140.
In addition to generation of a methyl radical, formation of a formaldehyde molecule was observed in the thermal reaction of methane with AuNbO3+ heteronuclear oxide cluster cations. The clusters were prepared by laser ablation and mass‐selected to react with CH4 in an ion‐trap reactor under thermal collision conditions. The reaction was studied by mass spectrometry and DFT calculations. The latter indicated that the gold atom promotes formaldehyde formation through transformation of an Au?O bond into an Au?Nb bond during the reaction.  相似文献   
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