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1.
在传统逆温差结晶法基础上,通过引入高质量籽晶,采用籽晶诱导逆温差结晶法生长出尺寸为11mm×11mm×2mm的CH3NH3PbCl3钙钛矿单晶.X射线衍射和Rietveld精修结果表明,室温下CH3NH3PbCl3单晶是立方相,其空间群为Pm■m,晶格常数a=0.56877 nm.偏光显微镜研究结果表明,CH3NH3PbCl3单晶的生长机理遵循光滑界面的台阶横向长大机制,并沿着台阶的外法线方向长大.变温拉曼光谱研究表明CH3NH3PbCl3单晶在温度160 K发生了正交-四方相转变,但四方相结构不稳定,存在的温度区间非常狭窄,故再次转变为立方相(Pm■m).紫外-可见-近红外吸收光谱和光致发光谱研究表明,CH3NH3PbCl3单晶的吸收截止边约在波长442 nm,光致发光峰为450 ...  相似文献   

2.
针对钙钛矿太阳能电池(PSCs)的空间应用,研究了动能为0.1—20.0 MeV的质子在CH3NH3PbI3(简称MAPbI3)薄膜及其太阳能电池中引起的损伤效应.结果表明, PSCs具有良好质子辐照稳定性,当0.1 MeV(2.0 MeV)质子的注量超过1×1013 p/cm2 (1×1014 p/cm2)时,才会引起电池光电性能的降低. PSCs载流子传输层的辐照退化可能是造成电池性能降低的主要原因. MAPbI3中的有机成分MAI会在质子辐照作用下发生分解,分解产生的气态产物(NH3和CH3I)将最终导致PSCs表面金电极的剥落.对于具有更大离子射程的10 MeV和20 MeV质子,入射质子会在PSCs的玻璃基底中产生色心缺陷,造成玻璃对可见光透射率的降低.色心缺陷可以在室温或100℃条件下发生热退火,降低玻璃的透射损失.  相似文献   

3.
采用从头计算二阶自旋-轨道多组态准简并微扰理论计算了碘代甲烷CH3I分子与基态2I03/2和激发态2I0*1/2原子解离极限相关联的势能曲线. 计算了CH3I分子的吸收谱,分析了CH3I分子的光解离过程,并估计了激发态碘原子2I0*3/2的量子产额. 计算结果表明,该方法可用以解释光解离实验结果. 关键词: 3I分子')" href="#">CH3I分子 自旋-轨道耦合 量子产额 光解离  相似文献   

4.
高剑森  张宁 《物理学报》2008,57(12):7872-7877
采用溶胶凝胶方法制备了Fe掺杂钛酸钡多晶系列陶瓷BaTi1-zFezO3+δ(0.005≤z≤0.02) (BTFO).X射线衍射实验显示,所制备的BTFO的结构仍然为四方相钙钛矿.差热分析表明,该BTFO样品的铁电-顺电转变温度及相变潜热随掺杂量z的增加而下降.将该BTFO极化后与Tb1-xDyxF 关键词: 磁电耦合 掺杂效应 掺杂钛酸钡  相似文献   

5.
刘凤丽  蒋刚  白丽娜  孔凡杰 《物理学报》2011,60(3):37104-037104
本文采用基于密度泛函理论的第一性原理全势能线性缀加平面波方法(FLAPW),分析了Bi2Te3-xSex体系中各原子自旋轨道耦合(SOI)的p1/2修正对体系性质的影响,并对Bi2Te3-xSex(x≤3)同晶化合物的电子特性进行系统的理论研究,首次计算出Bi2S 关键词: 2Te3-xSex(x≤3)同晶化合物')" href="#">Bi2Te3-xSex(x≤3)同晶化合物 第一性原理 电子结构 自旋轨道耦合  相似文献   

6.
刘义*  张清  李海金  李勇  刘厚通 《物理学报》2013,62(4):47202-047202
采用溶胶-凝胶方法成功制备了Sr的替代化合物Y1-xSrxCoO3 (x=0, 0.01, 0.05, 0.10, 0.15, 0.20), 系统地研究了20–720 K温度范围内Y1-xSrxCoO3的电阻率温度关系. 研究表明, 随着Sr的替代含量的增加, Y1-xSrxCoO3的电阻率迅速地降低, 这主要是由于载流子浓度的增加引起. 样品x=0和0.01在低于330和260 K的温度范围内, 电阻率与温度之间满足指数关系lnρ∝1/T, 获得导电激活能分别为0.2950和0.1461 eV. 然而, 实验显示lnρ∝1/T关系仅成立于重掺杂样品的高温区; 在低温区莫特定律lnρT-1/4成立, 且表明重掺杂引入势垒, 导致大量局域态的形成. 根据莫特T-1/4定律拟合实验数据, 评估了局域态密度N(EF), 它随着掺杂量的增加而增加. 关键词: 热电材料 溶胶-凝胶 3')" href="#">YCoO3  相似文献   

7.
利用倾斜衬底沉积法在无织构的金属衬底上生长了MgO双轴织构的模板层,在这一模板层上实现了YBa2Cu3O7-x薄膜的外延生长.在外延YBa2Cu3O7-x薄膜前,依次沉积了钇稳定的立方氧化锆和CeO2作为缓冲层.利用X射线衍射2θ扫描、扫描、Ω扫描和极图分析测定了这些膜的结构和双轴织 关键词: 2Cu3O7-x镀膜导体')" href="#">YBa2Cu3O7-x镀膜导体 2缓冲层')" href="#">CeO2缓冲层 厚度依赖性 外延生长  相似文献   

8.
通过固相反应烧结法成功制备了层状钙钛矿La1.3Sr1.7Mn2-xCuxO7多晶,主要研究了其磁电特性.结果表明,样品为Sr3Ti2O7型钙钛矿结构.随着温度的降低,其磁性经历了一个很复杂的转变过程.当x=0时,在T*=231K出现二维短程铁磁有序,在< 关键词: 层状钙钛矿 磁性 电特性  相似文献   

9.
利用固相反应烧结技术制备La0.1Bi0.9-xEuxFeO3系列化合物. 利用X射线粉末衍射进行物相鉴定和结构分析,确定了材料的相关系:x≤0.05,材料为R3c结构相;0.08≤x≤0.12,材料为赝R3c结构相;x≥0.15是Pbnm相,其中0.15≤x≤0.20区域Pbnm相存在畸变. 磁测量结果表明,材料具有弱铁磁性,对于x≤0.20材料,磁矩在x=0.12成分存在极值. 利用阻抗分析仪测量了室温介电常数随成分的变化关系.讨论了材料的结构与弱铁磁性和室温介电常数间的关系. 关键词: 0.1Bi0.9-xEuxFeO3')" href="#">La0.1Bi0.9-xEuxFeO3 X射线衍射 磁性 介电常数  相似文献   

10.
崔宏飞  李凯  杨晨光  贺淑莉 《物理学报》2015,64(5):57501-057501
本文采用高温有机溶剂法制备了(Fe1-xCox)3BO5纳米棒, 通过控制反应物中乙酰丙酮钴的含量合成了不同Co含量的(Fe1-xCox)3BO5. 利用高分辨透射电子显微镜(HRTEM)、超导量子干涉磁强计(SQUID)对其形貌和磁性能进行了表征. 高分辨透射电子显微镜结果表明制备出的纳米(Fe1-xCox)3BO5为多晶棒状, 且具有多折孪晶结构; 磁性测量的结果表明,(Fe1-xCox)3BO5纳米棒在室温下表现出铁磁性, 随着Co含量的增加, 纳米棒的铁磁性逐渐增加, 该纳米棒有望用来研究生物大分子的机械性能.  相似文献   

11.
Temperature-dependent photoluminescence characteristics of organic-inorganic halide perovskite CH_3NH_3Pb I_(3-x)Cl_x films prepared using a two-step method on ZnO/FTO substrates were investigated. Surface morphology and absorption characteristics of the films were also studied. Scanning electron microscopy revealed large crystals and substrate coverage. The orthorhombic-to-tetragonal phase transition temperature was~140 K. The films' exciton binding energy was 77.6 ± 10.9 meV and the energy of optical phonons was 38.8 ± 2.5 meV. These results suggest that perovskite CH_3NH_3Pb I_(3-x)Cl_x films have excellent optoelectronic characteristics which further suggests their potential usage in perovskitebased optoelectronic devices.  相似文献   

12.
有机无机杂化固态太阳能电池的研究进展   总被引:1,自引:0,他引:1       下载免费PDF全文
袁怀亮  李俊鹏  王鸣魁 《物理学报》2015,64(3):38405-038405
近年来, 由于钙钛矿材料优良的光学吸收和电荷传导特性, 有机无机杂化固态太阳能电池取得了突破性的进展. 自2009年首次报道了光电转换效率为3.8%的钙钛矿太阳能电池以来, 该类电池的效率不断突破. 基于介孔薄膜的电池已取得了超过16.7%的认证光电转换效率, 基于平板异质结结构电池光电转换效率达到19.3%, 已接近传统硅基太阳能电池的光电转换效率. 本文将介绍有机无机杂化钙钛矿作为光电材料的光学物理结构特性, 以及在固态太阳能电池中的应用. 基于固态钙钛矿太阳能电池结构上的差异, 分别介绍其在多孔结构、平板异质结结构、柔性结构以及无空穴传导材料结构电池工作特性和各自优势, 以及影响电池特性的主要影响因素, 特别是钙钛矿成膜控制等. 并阐述对钙钛矿电池的理解和进一步提高固态钙钛矿电池光电转换效率需要关注的重点以及展望.  相似文献   

13.
张翱  陈云琳  闫君  张春秀 《物理学报》2018,67(10):106701-106701
采用第一性原理计算了CH_3NH_3PbI_3中有机部分CH_3NH_3~+和CH_3NH_3的静电特性.结果表明:CH_3NH_3~+具有强的亲电特性,CH_3NH_3的CH_3~-端具有弱亲电性,而NH_3~-端具有弱亲核性.发现在CH_3NH_3PbI_3中CH_3NH_3~+之间强静电排斥作用在相变中起着重要的作用,且在室温条件下CH_3NH_3~+在无机笼中具备活性和无序的特性,使得TiO_2/CH_3NH_3PbI_3异质结中n型TiO_2的电子通过界面扩散到CH_3NH_3PbI_3材料,并与CH_3NH_3~+结合形成CH_3NH_3,CH_3NH_3的静电特性导致在内建电场作用下更容易取向,取向的CH_3NH_3周围形成的静电场会变得更弱和更加均匀.这对无机框架上载流子的产生和传输更加有利,这样的异质结比传统的pn结具有更大优势.这是CH_3NH_3PbI_3太阳能电池高的光电转换效率的重要原因.  相似文献   

14.
Weifeng Ma 《中国物理 B》2022,31(3):37802-037802
The methylammonium lead triiodide (CH3NH3PbI3)-based perovskite shows a great alluring prospect in areas of solar cells, lasers, photodetectors, and light emitting diodes owing to their excellent optical and electrical advantages. However, it is very sensitive to the surrounding oxygen and moisture, which limits its development seriously. It is urgent to spare no effort to enhance its optical and electrical stability for further application. In this paper, we synthesize the MAPbI3 perovskite film on the glass substrate with/without the ionic liquid (IL) of 1-Butyl-3-methylimidazolium tetrafluoroborate (BMIMBF4) by a simple two-step sequential solution method. The additive of BMIMBF4 can improve the quality of crystal structure. Moreover, the photo-luminescence (PL) intensity of MAPbI3 film with BMIMBF4 is much stronger than the pure MAPbI3 film after a week in the air, which is almost ten-fold of the pure one. Meanwhile, under the illumination of 405-nm continuous wave (CW) laser, the fluorescent duration of the MAPbI3 film with BMIMBF4 is approximately 2.75 min, while the pure MAPbI3 film is only about 6 s. In fact, ionic liquid of BMIMBF4 in the perovskite film plays a role of passivation, which prevents the dissolution of MAPbI3 into CH3NH3 and PbI2 and thus enhances the stability of environment. In addition, the ionic liquid of BMIMBF4 possesses high ionic conductivity, which accelerates the electron transport, so it is beneficial for the perovskite film in the areas of solar cells, photodetectors, and lasers. This interesting experiment provides a promising way to develop the perovskite's further application.  相似文献   

15.
汪涛  肖贵将  孙韧  罗林保  易茂祥 《中国物理 B》2022,31(1):18801-018801
To enhance device performance and reduce fabrication cost,a series of electron transporting material(ETM)-free perovskite solar cells(PSCs)is developed by TCAD Atlas.The accuracy of the physical mode of PSCs is verified,due to the simulations of PEDOT:PSS-CH3NH3PbI3-PCBM and CuSCN-CH3NH3PbI3-PCBM p-i-n PSCs showing a good agreement with experimental results.Different hole transporting materials(HTMs)are selected and directly combined with n-CH3NH3PbI3,and the CuSCN-CH3NH3PbI3 is the best in these ETM-free PSCs.To further study the CuSCN-CH3NH3PbI3 PSC,the influences of back electrode material,gradient band gap,thickness,doping concentration,and bulk defect density on the performance are investigated.Energy band and distribution of electric field are utilized to optimize the design.As a result,the efficiency of CuSCN-CH3NH3PbI3 PSC is achieved to be 26.64%.This study provides the guideline for designing and improving the performances of ETM-free PSCs.  相似文献   

16.
陈清源  黄杨  黄鹏儒  马泰  曹超  何垚 《中国物理 B》2016,25(2):27104-027104
Organic–inorganic hybrid perovskites play an important role in improving the efficiency of solid-state dye-sensitized solar cells. In this paper, we systematically explore the efficiency-enhancing mechanism of ABX_3(A = CH_3NH_3; B = Sn,Pb; X = Cl, Br, I) and provide the best absorber among ABX_3 when the organic framework A is CH_3NH_3 by first-principles calculations. The results reveal that the valence band maximum(VBM) of the ABX_3 is mainly composed of anion X p states and that conduction band minimum(CBM) of the ABX_3 is primarily composed of cation B p states. The bandgap of the ABX_3 decreases and the absorptive capacities of different wavelengths of light expand when reducing the size of the organic framework A, changing the B atom from Pb to Sn, and changing the X atom from Cl to Br to I. Finally, based on our calculations, it is discovered that CH_3NH_3 Sn I_3has the best optical properties and its light-adsorption range is the widest among all the ABX_3 compounds when A is CH_3NH_3. All these results indicate that the electronegativity difference between X and B plays a fundamental role in changing the energy gap and optical properties among ABX_3 compounds when A remains the same and that CH_3NH_3 Sn I_3 is a promising perovskite absorber in the high efficiency solar batteries among all the CH_3NH_3BX_3 compounds.  相似文献   

17.
杜会静  王韦超  朱键卓 《中国物理 B》2016,25(10):108802-108802
The lead-free perovskite solar cells(PSCs) have drawn a great deal of research interest due to the Pb toxicity of the lead halide perovskite.CH_3NH_3SnI_3 is a viable alternative to CH_3NH_3PbX_3,because it has a narrower band gap of 1.3 eV and a wider visible absorption spectrum than the lead halide perovskite.The progress of fabricating tin iodide PSCs with good stability has stimulated the studies of these CH_3NH_3SnI_3 based cells greatly.In the paper,we study the influences of various parameters on the solar cell performance through theoretical analysis and device simulation.It is found in the simulation that the solar cell performance can be improved to some extent by adjusting the doping concentration of the perovskite absorption layer and the electron affinity of the buffer and HTM,while the reduction of the defect density of the perovskite absorption layer significantly improves the cell performance.By further optimizing the parameters of the doping concentration(1.3 × 10~(16) cm~3) and the defect density(1 × 10~(15) cm~3) of perovskite absorption layer,and the electron affinity of buffer(4.0 eV) and HTM(2.6 eV),we finally obtain some encouraging results of the J_(sc) of 31.59 mA/cm~2,V_(oc) of 0.92 V,FF of 79.99%,and PCE of 23.36%.The results show that the lead-free CH_3NH_3SnI_3 PSC is a potential environmentally friendly solar cell with high efficiency.Improving the Sn~(2+) stability and reducing the defect density of CH_3NH_3SnI_3 are key issues for the future research,which can be solved by improving the fabrication and encapsulation process of the cell.  相似文献   

18.
李玲  尹万健 《中国物理 B》2022,31(1):17103-017103
Defect levels in semiconductor band gaps play a crucial role in functionalized semiconductors for practical applications in optoelectronics;however,first-principle defect calculations based on exchange-correlation functionals,such as local density approximation,grand gradient approximation(GGA),and hybrid functionals,either underestimate band gaps or misplace defect levels.In this study,we revisited iodine defects in CH3NH3PbI3 by combining the accuracy of total energy calculations of GGA and single-electron level calculation of the GW method.The combined approach predicted neutral Imi to be unstable and the transition level of Imi(+1/-1)to be close to the valence band maximum.Therefore,Imi may not be as detrimental as previously reported.Moreover,Vm I may be unstable in the-1 charged state but could still be detrimental owing to the deep transition level of Vm I(+1/0).These results could facilitate the further understanding of the intrinsic point defect and defect passivation observed in CH3NH3PbI3.  相似文献   

19.
制备了一种有机铅卤钙钛矿-有机本体异质结杂化串联太阳能电池。采用紫外可见吸收光谱、原子力显微镜对薄膜形貌进行了表征。结果表明:有机本体异质结层可以有效改善钙钛矿的表面形貌, 增强了可见光的吸收。优化后的串联结构电池的短路电流可达19.14mA/cm2, 开路电压为0.76V, 光电转换效率达到了6.54%。钙钛矿电池和有机本体异质结电池串联结构可以同时提高短路电流及填充因子, 二者具有较好的相容性和协同作用。  相似文献   

20.
范伟利  杨宗林  张振雲  齐俊杰 《物理学报》2018,67(22):228801-228801
碳基钙钛矿太阳能电池因稳定性高、成本低廉而备受关注,但由于钙钛矿与碳电极之间能级匹配度不高,界面阻力大而导致效率不及金属基钙钛矿太阳能电池.本文制备了碳基无空穴传输层FTO/c-TiO2/m-TiO2/CH3NH3PbI3/Carbon电池结构.通过对介孔二氧化钛层、钙钛矿层厚度进行优化,并对钙钛矿的薄膜形貌及钙钛矿激发电子寿命、可见光吸收度、载流子的提取与分离等进行深度分析,讨论了电池效率提升的内在机理.当介孔氧化钛层和钙钛矿层达到最优厚度时,钙钛矿太阳能电池获得了开路电压(Voc)为0.93 V、电流密度(Jsc)为21.75 mA/cm2、填充因子为55%、光电转化效率达到11.11%.同时对电池进行了稳定性研究,在室温湿度为40%–50%的条件下放置15 d电池性能依旧稳定保持原来的95%,优于金属基钙钛矿太阳能电池,从而为碳电极钙钛矿太阳能电池的商业化发展提供了可能.  相似文献   

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