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1.
为充分利用太阳光的短波部分,将AlxGa1-xAs设计为电池的又一个光伏工作层,并引入固定负电荷,建立界面感应势垒,形成MIp+-AlGaAs感应结,有效降低界面对光生电子的复合.以制作工艺简单的p+-AlGaAs/p-GaAs界面,将感应结与p/n-GaAs部分连接起来,构成新型高效率复合结构MIp+-Al0.3Ga0.7As/p-n-n+-GaAs太阳电池.其I-Ⅴ特性理论研究结果表明,选择合适的负电荷面密度数和Al0.3Ga0.7As层的掺杂浓度,即建立合适高度的感应势垒,可显著降低界面复合速度近8个数量级.优化设计得到的整个电池的效率为31.5%,较传统的窗口层电池有明显提高.  相似文献   

2.
制备了基于调制掺杂Al0.22Ga0.78N/GaN异质结的Pt/Al0.22Ga0.78N/GaN肖特基二极管.由于Al0.22Ga0.78N势垒层中的极化场不同,不同Al0.22Ga0.78N势垒层厚度的二极管的电容-电压特性显著不同.根据对样品电容-电压特性的数值模拟,在Al0.22Ga0.78N势垒层厚度为30nm和45nm的样品中,异质界面的极化电荷面密度为6.78×1012cm-2.在Al0.22Ga0.78N势垒层厚度为75nm的样品中,极化电荷面密度降为1.30×1012cm-2.这种极化电荷面密度的降低是由于GaN上Al0.22Ga0.78N势垒层由于厚度增加而产生应变的部分弛豫.本工作也提供了一种定量表征AlxGa1-xN/GaN异质结中极化电荷面密度的方法.  相似文献   

3.
郭丽娟  胡吉松  马新国  项炬 《物理学报》2019,68(9):97101-097101
采用第一性原理方法研究了二硫化钨/石墨烯异质结的界面结合作用以及电子性质,结果表明在二硫化钨/石墨烯异质结中,其界面相互作用是微弱的范德瓦耳斯力.能带计算结果显示异质结中二硫化钨和石墨烯各自的电子性质得到了保留,同时,由于石墨烯的结合作用,二硫化钨呈现出n型半导体.通过改变界面的层间距可以调控二硫化钼/石墨烯异质结的肖特基势垒类型,层间距增大,肖特基将从p型转变为n型接触.三维电荷密度差分图表明,负电荷聚集在二硫化钨附近,正电荷聚集在石墨烯附近,从而在界面处形成内建电场.肖特基势垒变化与界面电荷流动密切相关,平面平均电荷密度差分图显示,随着层间距逐渐增大,界面电荷转移越来越弱,且空间电荷聚集区位置向石墨烯层方向靠近,导致费米能级向上平移,证实了肖特基势垒随着层间距的增加由p型接触向n型转变.本文的研究结果将为二维范德瓦耳斯场效应管的设计与制作提供指导.  相似文献   

4.
为了研究柔性太阳能电池的性能,通过太阳能电池减薄工艺制备出轻质柔性Ga In P/Ga(In)As/Ge三结太阳能电池芯片。尺寸为40 mm×60 mm的电池芯片重量为0.7 g,仅为常规175μm厚度电池重量的30%。验证了柔性电池工艺的可行性,制得的柔性电池转换效率达到了30.64%,同常规厚度电池十分接近。对比测试了两种样品不同温度下的暗电流曲线,拟合了两种电池样品的温度系数,结果表明:电池的温度系数与衬底类型无关,只与电池PN结本身相关。  相似文献   

5.
刘芳芳  何青  周志强  孙云 《物理学报》2014,63(6):67203-067203
Cu元素成分对Cu(In,Ga)Se2(简称CIGS)薄膜材料的电学性质及其电池器件性能有很重要的影响.本文利用蒸发法制备了贫Cu和富Cu的CIGS吸收层(0.7Cu/(Ga+In)1.15)及相应的电池器件.扫描电镜和Hall测试发现,富Cu材料的结构特性(晶粒大、结晶状态好)和电学特性(电阻率低、迁移率高等)优于贫Cu材料,而性能测试表明贫Cu器件的效率优于富Cu器件.变温性能测试分析表明,贫Cu器件的主要复合路径是体复合,激活能与CIGS禁带宽度相当;富Cu器件的主要复合路径是界面复合,其激活能远小于CIGS禁带宽度,这大大降低了开路电压Voc,从而降低了电池效率.最后利用蒸发三步法制备了体材料稍富Cu表面贫Cu的CIGS吸收层,降低了短路电流和开路电压的损失,获得了超过15%的电池效率.  相似文献   

6.
用高分辨X射线衍射仪(HRXRD)研究了表面钝化前后Al0.22Ga0.78N/GaN异质结势垒层应变的高温特性,温度变化范围从室温到813K.结果表明,对未钝化的异质结,当测试温度高于523K时,Al0.22Ga0.78N势垒层开始出现应变弛豫;钝化后,在Al0.22Ga0.78N势垒层中会产生一个附加的平面拉伸应变,并随着温度的增加,势垒层中的平面拉伸应变会呈现出一个初始的增加,接着应变将减小,对100nm厚的Al0.22Ga0.78N势垒层,应变只是轻微地减小,但对于50nm厚的Al0.22Ga0.78N势垒层,则出现了严重的应变弛豫现象.  相似文献   

7.
利用同步辐射光电发射和铁磁共振(FMR)研究了Co/GaAs(100)界面形成以及Co超薄膜的磁性质.结果表明,在低覆盖度(约为0.2nm)下,Co吸附原子与衬底发生强烈的界面反应,在覆盖度为0.9nm时,形成稳定的界面.从衬底扩散出的Ga原子与Co覆盖层合金化,而部分As原子与Co原子发生反应,形成稳定的键合,这些反应产物都停留在界面处很窄的区域(0.3—0.4nm)内.另一部分As原子偏析在Co覆盖层表面.结合理论模型,详细地讨论了界面结构及Ga,As原子的深度分布.FMR结果表明,生长的Co超薄膜具 关键词:  相似文献   

8.
采用美国滨州大学研发的AMPS-1D软件,模拟了TCO与非晶硅界面势垒对TCO/a-Si:H(p+)/a-Si:H(i)/c-Si(n) /a-Si:H(i) /a-Si:H(n+) /TCO双面HIT异质结太阳电池光伏特性的影响。结果表明太阳电池的TCO/p+前接触界面势垒(对于电子)越高,越易形成欧姆接触,且电池的短波响应增强,使电池性能变好。模拟还发现,n+ /TCO背接触界面势垒(对于电子)越低,电池性能越好。若背场重掺杂,在背接触势垒小于等于0.5ev时,电池的转换效率不会受到背接触势垒的影响;若背场低掺杂,在背接触势垒很小的情况下,也能达到与重掺杂相同的转换效率。  相似文献   

9.
韩安军  孙云*  李志国  李博研  何静靖  张毅  刘玮 《物理学报》2013,62(4):48401-048401
衬底温度保持恒定, 在Se气氛下按照一定的元素配比顺序蒸发Ga, In, Cu制备厚度约为0.7 μrm的Cu(In0.7Ga0.3)Se2 (CIGS)薄膜. 利用X射线衍射仪分析薄膜的晶体结构及物相组成, 扫描电子显微镜表征薄膜形貌及结晶质量, 二次离子质谱仪测试薄膜内部元素分布, 拉曼散射谱 分析薄膜表面构成, 带积分球附件的分光光度计测量薄膜光学性能. 研究发现在Ga-In-Se预制层内, In主要通过晶界扩散引起Ga/(Ga+In)分布均匀化. 衬底温度高于450 ℃时, 薄膜呈现单一的Cu(In0.7Ga0.3)Se2相; 低于400℃, 薄膜存在严重的Ga的两相分离现象, 且高含Ga相主要存在于薄膜的上下表面; 低于300 ℃, 薄膜结晶质量进一步恶化. 薄膜表层的高含Ga相Cu(In0.5Ga0.5)Se2以小晶粒形式均匀分布于薄膜表面, 增加了薄膜的粗糙度, 在电池内形成陷光结构, 提高了超薄电池对光的吸收. 加上带隙值较小的低含Ga相的存在, 使电池短路电流密度得到较大改善. 衬底温度在550 ℃–350 ℃变化时, 短路电流密度JSC是影响超薄电池转换效率的主要因素; 而衬底温度Tsub低于300 ℃时, 开路电压VOC和填充因子FF降低已成为电池性能减退的主要原因. Tsub为350 ℃时制备的0.7 μm左右的超薄CIGS电池转换效率达到了10.3%. 关键词: 2薄膜')" href="#">Cu(In,Ga)Se2薄膜 衬底温度 超薄 太阳电池  相似文献   

10.
采用美国滨州大学研发的AMPS-1D软件,模拟了TCO与非晶硅界面势垒对TCO/a-Si:H(p+)/a-Si:H(i)/c-Si(n)/a-Si:H(i) /a-Si:H(n+)/TCO双面HIT异质结太阳电池光伏特性的影响.结果表明太阳电池的TCO/p+前接触界面势垒(对于电子)越高,越易形成欧姆接触,且电池的短波响应增强,使电池性能变好.模拟还发现,n+/TCO背接触界面势垒(对于电子)越低,电池性能越好.若背场重掺杂,在背接触势垒小于等于0.5 eV时,电池的转换效率不会受到背接触势垒的影响;若背场低掺杂,在背接触势垒很小的情况下,也能达到与重掺杂相同的转换效率.  相似文献   

11.
Ling-Ling Wu 《中国物理 B》2022,31(10):108803-108803
Recently, the efficiency of CdTe thin film solar cell has been improved by using new type of window layer MgxZn1-xO (MZO). However, it is hard to achieve such a high efficiency as expected. In this report a comparative study is carried out between the MZO/CdTe and CdS/CdTe solar cells to investigate the factors affecting the device performance of MZO/CdTe solar cells. The efficiency loss quantified by voltage-dependent photocurrent collection efficiency (ηC(V')) is 3.89% for MZO/CdTe and 1.53% for CdS/CdTe solar cells. The higher efficiency loss for the MZO/CdTe solar cell is induced by more severe carrier recombination at the MZO/CdTe p—n junction interface and in CdTe bulk region than that for the CdS/CdTe solar cell. Activation energy (Ea) of the reverse saturation current of the MZO/CdTe and CdS/CdTe solar cells are found to be 1.08 eV and 1.36 eV, respectively. These values indicate that for the CdS/CdTe solar cell the carrier recombination is dominated by bulk Shockley—Read—Hall (SRH) recombination and for the MZO/CdTe solar cell the carrier recombination is dominated by the p—n junction interface recombination. It is found that the tunneling-enhanced interface recombination is also involved in carrier recombination in the MZO/CdTe solar cell. This work demonstrates the poor device performance of the MZO/CdTe solar cell is induced by more severe interface and bulk recombination than that of the CdS/CdTe solar cell.  相似文献   

12.
A novel surface passivation technique for GaAs using an ultrathin GaN interface control layer (GaN ICL) formed by surface nitridation was characterized by ultrahigh vacuum (UHV) photoluminescence (PL) and capacitance–voltage (CV) measurements. The PL quantum efficiency was dramatically enhanced after being passivated by the GaN ICL structure, reaching as high as 30 times of the initial clean GaAs surface. Further analysis of PL data was done by the PL surface state spectroscopy (PLS3) simulation technique. PL and CV results are in good agreement indicating that ultrathin GaN ICL reduces the gap states and unpins the Fermi level, realizing a wide movement of Fermi level within the midgap region and reduction of the effective surface recombination velocity by a factor of 1/60. GaN layer also introduced a large negative surface fixed charge of about 1012 cm−2. A further improvement took place by depositing a Si3N4 layer on GaN ICL/GaAs structure.  相似文献   

13.
采用阶变缓冲层技术 (step-graded) 外延生长了具有更优带隙组合的倒装GaInP/GaAs/In0.3Ga0.7As(1.0 eV) 三结太阳电池材料, TEM和HRXRD测试表明晶格失配度为2%的In0.3Ga0.7As 底电池具有较低的穿透位错密度和较高的晶体质量, 达到太阳电池的制备要求. 通过键合、剥离等工艺制备了太阳电池芯片. 面积为 10.922 cm2 的太阳电池芯片在空间光谱条件下转换效率达到32.64% (AM0, 25 ℃), 比传统晶格匹配的 GaInP/GaAs/Ge(0.67 eV) 三结太阳电池的转换效率提高3个百分点. 关键词: 太阳电池 三结 倒装结构  相似文献   

14.
A Schottky diode was designed and fabricated on an n-AlGaAs/GaAs high electron mobility transistor (HEMT) structure for RF power detection. The processing steps used in the fabrication were the conventional steps used in standard GaAs processing. Current–voltage measurements showed that the devices had rectifying properties with a barrier height of 0.5289–0.5468 eV. The fabricated Schottky diodes detected RF signals well and their cut-off frequencies up to 20 GHz were estimated in direct injection experiments. To achieve a high cut-off frequency, a smaller Schottky contact area is required. The feasibility of direct integration with the planar dipole antenna via a coplanar waveguide transmission line without insertion of matching circuits was discussed. A higher cut-off frequency can also be achieved by reducing the length of the coplanar waveguide transmission line. These preliminary results represent a breakthrough as regards direct on-chip integration technology, towards the realization of a ubiquitous network society.  相似文献   

15.
This paper reports that a double N layer (a-Si:H/μc-Si:H) is used to substitute the single microcrystalline silicon n layer (n-μc-Si:H) in n/p tunnel recombination junction between subcells in a-Si:H/μc-Si:H tandem solar cells. The electrical transport and optical properties of these tunnel recombination junctions are investigated by current-voltage measurement and transmission measurement. The new n/p tunnel recombination junction shows a better ohmic contact. In addition, the n/p interface is exposed to the air to examine the effect of oxidation on the tunnel recombination junction performance. The open circuit voltage and FF of a-Si:H/μc-Si:H tandem solar cell are all improved and the current leakage of the subcells can be effectively prevented efficiently when the new n/p junction is implemented as tunnel recombination junction.  相似文献   

16.
A GaN-to-InGaN interface modification by predeposition of an ultrathin In-rich InGaN incomplete layer followed by a thin triangular InGaN well layer was employed to overcome the negative effects of polarization field on light emission efficiency of InGaN/GaN quantum wells as well as to improve the crystalline quality by avoidance of a significant strain generation and enhanced surfactant effect. Further, the interface modification induced energy band structure engineering reduces the spatial separation of electrons and holes, and thus increases the carrier recombination rate. The improvement in crystalline quality, localized potential fluctuation, and energy band engineering contribute to the significant increase of green emission of the InGaN/GaN quantum wells.  相似文献   

17.
赵启凤  庄奕琪  包军林  胡为 《物理学报》2015,64(13):136104-136104
本文针对NPN双极性晶体管, 在研究辐照感生的氧化层电荷及界面态对晶体管基极电流和1/f噪声的影响的基础上, 建立辐照感生氧化层电荷及界面态与基极电流和1/f噪声的定量物理模型. 根据所建立的模型, 提出一种新的分离方法, 利用1/f噪声和表面电流求出氧化层电荷密度, 利用所求得氧化层电荷密度和表面电流求出界面态密度. 利用本方法初步实现了辐照感生氧化层电荷及界面态的定量计算.  相似文献   

18.
直接键合的三结太阳能电池研究   总被引:2,自引:0,他引:2       下载免费PDF全文
彭红玲  张玮  孙利杰  马绍栋  石岩  渠红伟  张冶金  郑婉华 《物理学报》2014,63(17):178801-178801
本文研制了直接键合的三结GaInP/GaAs/InGaAsP太阳电池.直接键合技术可以减少晶格不匹配的材料在外延生长过程中产生的线位错和面缺陷,将缺陷限制在界面几十纳米的薄层而不向内扩散,是未来实现高效多结电池的发展趋势之一.此类电池国内鲜有报道.本文键合三结电池的键合界面采用p+GaAs/n+InP结构,得到电池开路电压3.0 V,在电池结构没有优化的情况下获得效率24%,表面未做减反膜.开路电压表明三结电池实现了串联,为单片集成的高效多结电池提供了新的途径.对实验结果进行了分析并给出了改进措施.  相似文献   

19.
We designed and fabricated new structure lasers, the high-power AlGaAs/GaAs remote junction (RJ) single quantum well (SQW) semiconductor lasers whose p–n junction was separated from the active layer. The RJ lasers showed marked reduction of threshold current during early aging period. This reduction was accompanied by a decrease of non-radiative recombination centers in the active layer. For the RJ SQW lasers, the relation between the low-frequency electrical noise and the lifetime of devices is different from the conventional SQW lasers.  相似文献   

20.
在低压金属有机化学气相沉积生长工艺中,对用于制作850nm垂直腔面发射激光器件的GaAs/Al_xGa_(1-x)As多量子阱外延结构的生长温度、反应室压力、总载气流量以及生长速度等主要工艺参量进行优化,并进行了完整外延结构的生长.实验结果表明:在700℃条件下,得到多种组分的GaAs/Al_xGa_(1-x)As多量子阱结构,通过光致发光谱对比测试得到的最佳组分x为0.24,同时得到良好的表面形貌,最终确定的最佳生长速度为0.34~0.511nm/s.  相似文献   

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