期刊文献+
共找到518篇文章
< 1 2 26 >
每页显示 20 50 100
Dimethylamine oxalate manipulating CsPbI_(3) perovskite film crystallization process for high efficiency carbon electrode based perovskite solar cells
1
作者 Wenran Wang Xin Peng +7 位作者 Jianxin Zhang Jiage Lin Rong Huang Guizhi Zhang Huishi Guo Zhenxiao Pan Xinhua Zhong Huashang Rao 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第6期221-228,I0006,共9页
Crystallization process determines the quality of perovskite films and the performances of resultant perovskite solar cells(PSCs).Dimethylamine oxalate has been proven as a multifunctional modulator,and is explored as... Crystallization process determines the quality of perovskite films and the performances of resultant perovskite solar cells(PSCs).Dimethylamine oxalate has been proven as a multifunctional modulator,and is explored as an efficient additive in manipulating the crystallization process of CsPbI_(3) perovskite films.On one hand,oxalate serves as the precipitator that facilitates the nucleation process of intermediate.The larger size of intermediate is conductive to the larger size and smaller grain boundaries of resultant perovskite.On the other hand,in subsequent annealing process,the phase conversion and growth process of transient perovskite can be decelerated due to the strong interactions of oxalate with both dimethylamine cation(DMA^(+))and Pb^(2+).Due to the optimized crystallization kinetics,the morphology and quality of CsPbI_(3) perovskite films are comprehensively improved with lower defect concentrations,and charge recombination loss is effectively suppressed.Benefiting from the optimized crystal quality of perovskite films,the carbon electrode-based CsPbI_(3) PSCs exhibit a champion efficiency of 18.48%.This represents one of the highest levels among all hole transport layer-free inorganic perovskite solar cells. 展开更多
关键词 Solar cells perovskite CsPbI_(3) Carbon electrodes OXALATE
下载PDF
Structure,ferroelectric,and enhanced fatigue properties of sol–gel-processed new Bi-based perovskite thin films of Bi(Cu_(1/2)Ti_(1/2))O_(3)–PbTiO_(3)
2
作者 宋伟宾 席国强 +10 位作者 潘昭 刘锦 叶旭斌 刘哲宏 王潇 单鹏飞 张林兴 鲁年鹏 樊龙龙 秦晓梅 龙有文 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第5期608-615,共8页
Bi-based perovskite ferroelectric thin films have wide applications in electronic devices due to their excellent ferroelectric properties.New Bi-based perovskite thin films Bi(Cu_(1/2)Ti_(1/2))O_(3)–PbTiO_(3)(BCT–PT... Bi-based perovskite ferroelectric thin films have wide applications in electronic devices due to their excellent ferroelectric properties.New Bi-based perovskite thin films Bi(Cu_(1/2)Ti_(1/2))O_(3)–PbTiO_(3)(BCT–PT) are deposited on Pt(111)/Ti/SiO_(2)/Si substrates in the present study by the traditional sol–gel method.Their structures and related ferroelectric and fatigue characteristics are studied in-depth.The BCT–PT thin films exhibit good crystallization within the phase-pure perovskite structure,besides,they have a predominant(100) orientation together with a dense and homogeneous microstructure.The remnant polarization(2P_(r)) values at 30 μC/cm^(2) and 16 μC/cm^(2) are observed in 0.1BCT–0.9PT and 0.2BCT–0.8PT thin films,respectively.More intriguingly,although the polarization values are not so high,0.2BCT–0.8PT thin films show outstanding polarization fatigue properties,with a high switchable polarization of 93.6% of the starting values after 10^(8) cycles,indicating promising applications in ferroelectric memories. 展开更多
关键词 FERROELECTRIC thin films perovskite PbTiO_(3)-BiMeO_(3)
下载PDF
Highly ordered crystallization of α-FAPbl_(3) films via homogeneous seeds for efficient perovskite solar cells
3
作者 Guohui Luo Linfeng Zhang +11 位作者 Liyun Guo Xiuhong Geng Penghui Ren Yi Zhang Haihua Hu Xiaoping Wu Lingbo Xu Ping Lin Haiyan He Xuegong Yu Peng Wang Can Cui 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第7期625-634,共10页
Formamidine lead triiodide(FAPbI_(3))perovskites have become the most promising photovoltaic materials for perovskite solar cells with record power conversion efficiency(PCE).However,random nucleation,phase transition... Formamidine lead triiodide(FAPbI_(3))perovskites have become the most promising photovoltaic materials for perovskite solar cells with record power conversion efficiency(PCE).However,random nucleation,phase transition,and lattice defects are still the key challenges limiting the quality of FAPbI_(3) films.Previous studies show that the introduction or adding of seeds in the precursor is effective to promote the nucleation and crystallization of perovskite films.Nevertheless,the seed-assisted approach focuses on heterogeneous seeds or hetero-composites,which inevitably induce a lattice-mismatch,the genera-tion of strain or defects,and the phase segregation in the perovskite films.Herein,we first demonstrate that high-quality perovskite films are controllably prepared using α-and δ-phases mixed FAPbI_(3) micro-crystal as the homogeneous seeds with the one-step antisolvent method.The partially dissolved seeds with suitable sizes improve the crystallinity of the perovskite flm with preferable orientation,improved carrier lifetime,and increased carrier mobility.More importantly,the α-phase-containing seeds promote the formation of α-phase FAPbI_(3) films,leading to the reduction of residual lattice strain and the suppres-sion of I-ion migration.Besides,the adding of dimethyl 2,6-pyridine dicarboxylate(DPD)into the pre-cursor further suppresses the generation of defects,contributing to the PCE of devices prepared in air ambient being significantly improved to 23.75%,among the highest PCEs for fully air-processed FAPbI_(3) solar cells.The unpackaged target devices possess a high stability,maintaining 80%of the initial PCE under simulated solar illumination exceeding 800 h. 展开更多
关键词 perovskite solar cells FAPbI_(3) Homogeneous seeds Strain Phase stability
下载PDF
Inkjet-Printing Controlled Phase Evolution Boosts the Efficiency of Hole Transport Material Free and Carbon-Based CsPbBr_(3) Perovskite Solar Cells Exceeding 9%
4
作者 Lihua Zhang Shi Chen +7 位作者 Jie Zeng Zhengyan Jiang Qian Ai Xianfu Zhang Bihua Hu Xingzhu Wang Shihe Yang Baomin Xu 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2024年第2期209-220,共12页
Hole transport material free carbon-based all-inorganic CsPbBr_(3)perovskite solar cells(PSCs)are promising for commercialization due to its low-cost,high open-circuit voltage(V_(oc))and superior stability.Due to the ... Hole transport material free carbon-based all-inorganic CsPbBr_(3)perovskite solar cells(PSCs)are promising for commercialization due to its low-cost,high open-circuit voltage(V_(oc))and superior stability.Due to the different solubility of PbBr_(2)and CsBr in conventional solvents,CsPbBr_(3)films are mainly obtained by multi-step spin-coating through the phase evolution from PbBr_(2)to CsPb_(2)Br_(5)and then to CsPbBr_(3).The scalable fabrication of high-quality CsPbBr_(3)films has been rarely studied.Herein,an inkjet-printing method is developed to prepare high-quality CsPbBr_(3)films.The formation of long-range crystalline CsPb_(2)Br_(5)phase can effectively improve phase purity and promote regular crystal stacking of CsPbBr_(3).Consequently,the inkjet-printed CsPbBr_(3)C-PSCs realized PCEs up to 9.09%,8.59%and 7.81%with active areas of 0.09,0.25,and 1 cm^(2),respectively,demonstrating the upscaling potential of our fabrication method and devices.This high performance is mainly ascribed to the high purity,strong crystal orientation,reduced surface roughness and lower trap states density of the as-printed CsPbBr_(3)films.This work provides insights into the relationship between the phase evolution mechanisms and crystal growth dynamics of cesium lead bromide halide films. 展开更多
关键词 all-inorganic perovskite solar cells CsPbBr_(3) inkjet-printing phase evolution
下载PDF
Comparison of Perovskite Systems Based on AFeO_(3)(A=Ce,La,Y)in CO_(2) Hydrogenation to CO
5
作者 Anna N.Matveyeva Shamil O.Omarov 《Transactions of Tianjin University》 EI CAS 2024年第4期337-358,共22页
CO_(2) is the most cost-eff ective and abundant carbon resource,while the reverse water-gas reaction(rWGS)is one of the most eff ective methods of CO_(2) utilization.This work presents a comparative study of rWGS acti... CO_(2) is the most cost-eff ective and abundant carbon resource,while the reverse water-gas reaction(rWGS)is one of the most eff ective methods of CO_(2) utilization.This work presents a comparative study of rWGS activity for perovskite systems based on AFeO_(3)(where A=Ce,La,Y).These systems were synthesized by solution combustion synthesis(SCS)with diff erent ratios of fuel(glycine)and oxidizer(φ),diff erent amounts of NH 4 NO_(3),and the addition of alumina or silica as supports.Various techniques,including X-ray diff raction analysis,thermogravimetric analysis,Fourier transform infrared spectroscopy(FTIR),scanning electron microscopy,energy-dispersive X-ray spectroscopy,N 2-physisorption,H_(2) temper-ature-programmed reduction,temperature-programmed desorption of H_(2) and CO_(2),Raman spectroscopy,and in situ FTIR,were used to relate the physicochemical properties with the catalytic performance of the obtained composites.Each specifi c perovskite-containing system(either bulk or supported)has its own optimalφand NH_(4) NO_(3) amount to achieve the highest yield and dispersion of the perovskite phase.Among all synthesized systems,bulk SCS-derived La-Fe-O systems showed the highest resistance to reducing environments and the easiest hydrogen desorption,outperforming La-Fe-O produced by solgel combustion(SGC).CO_(2) conversion into CO at 600°C for bulk ferrite systems,depending on the A-cation type and preparation method,follows the order La(SGC)<Y<Ce<La(SCS).The diff erences in properties between La-Fe-O obtained by the SCS and SGC methods can be attributed to diff erent ratios of oxygen and lanthanum vacancy contributions,hydroxyl coverage,morphology,and free iron oxide presence.In situ FTIR data revealed that CO_(2) hydrogenation occurs through formates generated under reaction conditions on the bulk system based on La-Fe-O,obtained by the SCS method.γ-Al_(2)O_(3) improves the dispersion of CeFeO_(3) and LaFeO_(3) phases,the specifi c surface area,and the quantity of adsorbed H_(2) and CO_(2).This led to a signifi cant increase in CO_(2) conversion for supported CeFeO_(3) but not for the La-based system compared to bulk and SiO_(2)-supported perovskite catalysts.However,adding alumina increased the activity per mass for both Ce-and La-based perovskite systems,reducing the amount of rare-earth components in the catalyst and thereby lowering the cost without substantially compromising stability. 展开更多
关键词 perovskites LaFeO_(3) CeFeO_(3) YFeO_(3) Solution combustion synthesis CO_(2) hydrogenation Reverse water–gas reaction(rWGS)
下载PDF
纳秒/皮秒激光加工CaSiO_(3) LTCC的可行性对比研究
6
作者 谢明君 韦佳伟 +2 位作者 肖何 赵俊熠 陈妮 《工具技术》 北大核心 2024年第12期10-17,共8页
围绕硅酸钙低温共烧陶瓷叠层基板难加工的问题,对比纳秒和皮秒激光加工对CaSiO_(3) LTCC的影响、激光作用后的成分以及不同激光参数下CaSiO_(3) LTCC的烧蚀特性,通过硬度变化评价两种激光加工的可行性。结果表明:两种激光加工后的区域... 围绕硅酸钙低温共烧陶瓷叠层基板难加工的问题,对比纳秒和皮秒激光加工对CaSiO_(3) LTCC的影响、激光作用后的成分以及不同激光参数下CaSiO_(3) LTCC的烧蚀特性,通过硬度变化评价两种激光加工的可行性。结果表明:两种激光加工后的区域皆呈现出粉末层及重铸层的叠加,重铸层产物均为CaSiO_(3),皮秒激光加工后的形貌优于纳秒加工后的形貌;纳秒和皮秒的烧蚀深度分别在97.2~442.6μm和161.7~461.7μm范围内,随激光功率的增加以及速度和填充间距的减小,烧蚀深度基本呈线性增加的趋势,激光功率是影响烧蚀深度的主要因素;皮秒激光作用后的表面粗糙度整体比纳秒激光更低,化学铣切后最小可达6.41μm;纳秒作用后表面热影响区硬度分别下降72.0%~77.2%,较皮秒激光加工更利于后续机加工处理。 展开更多
关键词 纳秒激光 皮秒激光 casio 3 LTCC 粗糙度 维氏硬度
下载PDF
Ca_(2)MnO_(4)-layered perovskite modified by NaNO_(3)for chemical-looping oxidative dehydrogenation of ethane to ethylene
7
作者 Weixiao Ding Kun Zhao +2 位作者 Shican Jiang Zhen Huang Fang He 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2024年第4期53-64,共12页
Chemical-looping oxidative dehydrogenation(CL-ODH)is a process designed for the conversion of alkanes into olefins through cyclic redox reactions,eliminating the need for gaseous O_(2).In this work,we investigated the... Chemical-looping oxidative dehydrogenation(CL-ODH)is a process designed for the conversion of alkanes into olefins through cyclic redox reactions,eliminating the need for gaseous O_(2).In this work,we investigated the use of Ca_(2)MnO_(4)-layered perovskites modified with NaNO_(3) dopants,serving as redox catalysts(also known as oxygen carriers),for the CL-ODH of ethane within a temperature range of 700-780℃.Our findings revealed that the incorporation of NaNO_(3) as a modifier significantly-nhanced the selectivity for-thylene generation from Ca_(2)MnO_(4).At 750℃and a gas hourly space velocity of 1300 h^(-1),we achieved an-thane conversion up to 68.17%,accompanied by a corresponding-thylene yield of 57.39%.X-ray photoelectron spectroscopy analysis unveiled that the doping NaNO_(3) onto Ca_(2)MnO_(4) not only played a role in reducing the oxidation state of Mn ions but also increased the lattice oxygen content of the redox catalyst.Furthermore,formation of NaNO_(3) shell on the surface of Ca_(2)MnO_(4) led to a reduction in the concentration of manganese sites and modulated the oxygen-releasing behavior in a step-wise manner.This modulation contributed significantly to the enhanced selectivity for ethylene of the NaNO_(3)-doped Ca_(2)MnO_(4) catalyst.These findings provide compelling evidence for the potential of Ca_(2)MnO_(4)-layered perovskites as promising redox catalysts in the context of CL-ODH reactions. 展开更多
关键词 Chemical-looping oxidative DEHYDROGENATION ETHANE ETHYLENE NaNO_(3)-doped Ca_(2)MnO_(4)redox catalyst Layered perovskites
下载PDF
有机金属卤化物钙钛矿CH_(3)NH_(3)PbBr_(3)的各向异性Rashba效应
8
作者 蔡锦鸿 余达明 周贤中 《原子与分子物理学报》 CAS 北大核心 2025年第6期153-158,共6页
本研究通过密度泛函理论结合全相对论赝势对钙钛矿CH_(3)NH_(3)PbBr_(3)中的各向异性Rashba效应进行了深入研究.发现,Pb-Br八面体的畸变引起了导带最小间隙的三重态在自旋轨道耦合(SOC)效应和晶格形变下的分裂,导致在不同方向上呈现出... 本研究通过密度泛函理论结合全相对论赝势对钙钛矿CH_(3)NH_(3)PbBr_(3)中的各向异性Rashba效应进行了深入研究.发现,Pb-Br八面体的畸变引起了导带最小间隙的三重态在自旋轨道耦合(SOC)效应和晶格形变下的分裂,导致在不同方向上呈现出强烈的各向异性.Rashba带分裂的最大系数可达2.0 eV?,并通过分析能级和电荷密度分布解释了Rashba效应的形成机制.这些研究结果有助于深化对CH_(3)NH_(3)PbBr_(3)性质的理解,同时为其在自旋电子学领域的潜在应用提供了理论基础. 展开更多
关键词 钙钛矿 CH_3NH_3PbBr_3 密度泛函理论 自旋轨道耦合
下载PDF
反溶剂对CsPbBr_(3)太阳电池性能的影响 被引量:1
9
作者 陈莹 李富强 《太阳能学报》 EI CAS CSCD 北大核心 2024年第4期122-126,共5页
分别在钙钛矿前驱体中添加一系列的反溶剂乙酸乙酯(EA)和乙腈(ACN),制备出不同形貌的CsPbBr_(3)薄膜,探究薄膜质量与太阳电池性能的内在联系。结果表明,在大气制备环境中,反溶剂有助于CsPbBr_(3)晶粒的生长,薄膜表面缺陷明显减少,太阳... 分别在钙钛矿前驱体中添加一系列的反溶剂乙酸乙酯(EA)和乙腈(ACN),制备出不同形貌的CsPbBr_(3)薄膜,探究薄膜质量与太阳电池性能的内在联系。结果表明,在大气制备环境中,反溶剂有助于CsPbBr_(3)晶粒的生长,薄膜表面缺陷明显减少,太阳电池各性能参数(短路电流密度、开路电压以及填充因子)均有所提升,尤其是添加乙腈(V(PbBr_(2)/DMF)∶V(ACN)=10∶1)后,光电转换效率(PCE)从3.16%提高到7.10%。 展开更多
关键词 钙钛矿太阳电池 太阳电池效率 薄膜制备 缺陷 反溶剂 CsPbBr_(3)
下载PDF
基于FASnI_(3)的钙钛矿太阳电池仿真研究
10
作者 甘永进 邱贵新 +2 位作者 曾昭祥 李玉霞 覃斌毅 《电源技术》 CAS 北大核心 2024年第10期2058-2065,共8页
为提高电池的效率、减少环境污染,提出一种结构为FTO/Zn(O_(0.3),S_(0.7))/FASnI_(3)/NiO/Au的无铅钙钛矿太阳电池。该电池以FASnI_(3)为光活性层,Zn(O_(0.3),S_(0.7))和NiO分别为电子传输层和空穴传输层,FTO和Au为接触电极。在太阳电... 为提高电池的效率、减少环境污染,提出一种结构为FTO/Zn(O_(0.3),S_(0.7))/FASnI_(3)/NiO/Au的无铅钙钛矿太阳电池。该电池以FASnI_(3)为光活性层,Zn(O_(0.3),S_(0.7))和NiO分别为电子传输层和空穴传输层,FTO和Au为接触电极。在太阳电池电容模拟器(SCAPS)中构建模型并设置材料参数,通过控制变量法进行参数优化。结果表明,当FASnI_(3)厚度为500 nm时,器件对光子的吸收较充分,输出最高的功率转换效率(PCE);随着FASnI_(3)缺陷态密度的升高,器件内部载流子复合中心增多,提高了载流子复合率,控制FASnI_(3)缺陷态密度不超过10^(14) cm^(-3)可确保电池输出性能较佳;当Zn(O_(0.3),S_(0.7))的厚度和电子亲和势优化为30 nm和3.5 eV时,载流子运输更为有效,电池输出最高的PCE;增大Zn(O_(0.3),S_(0.7))与FASnI_(3)界面缺陷态密度,导致光生载流子在界面更容易被捕获,控制Zn(O_(0.3),S_(0.7))与FASnI_(3)界面缺陷态密度不超过10^(13) cm^(-3)有利于提高电池性能。 展开更多
关键词 钙钛矿太阳电池 FASnI_(3) SCAPS仿真 活性层厚度 光电转换输出
下载PDF
甲胺基金属卤化物MAPbX_(3)铁电半导体研究进展
11
作者 南瑞华 刘腾 坚佳莹 《西安工业大学学报》 CAS 2024年第2期192-208,共17页
为了研究甲胺基金属卤化物MAPbX_(3)铁电半导体的铁电性对光伏性能的影响,文中梳理了近几年MAPbX_(3)的相关研究文献,分析了MAPbX_(3)晶体的光学吸收和载流子输运性能的影响因素,阐述了MAPbX_(3)铁电性的验证方法及铁电体中载流子的分... 为了研究甲胺基金属卤化物MAPbX_(3)铁电半导体的铁电性对光伏性能的影响,文中梳理了近几年MAPbX_(3)的相关研究文献,分析了MAPbX_(3)晶体的光学吸收和载流子输运性能的影响因素,阐述了MAPbX_(3)铁电性的验证方法及铁电体中载流子的分离机制,介绍了铁电半导体的应用,重点分析了MAPbX_(3)晶体结构方面的研究争议,讨论了MAPbX_(3)铁电性与铁弹性的关系,并对光伏器件的设计以及应用提出了新的研究思路。 展开更多
关键词 MAPbX_(3) 钙钛矿材料 光电性能 铁电性
下载PDF
CaSiO_(3)加填纸的可脱墨性及脱墨浆性能研究 被引量:2
12
作者 范述捷 苏振华 张羽 《中国造纸学报》 CAS CSCD 北大核心 2021年第3期49-53,共5页
探讨了2种CaSiO_(3)加填印刷纸的脱墨性能。结果表明,以CaSiO_(3)为填料的1^(#)纸样和以CaSiO_(3)/滑石粉为填料的2^(#)纸样均具有较好的脱墨效果,二者浮选脱墨浆料得率相同,1^(#)浮选脱墨浆的白度为77.5%ISO,略高于2^(#)浮选脱墨浆的73... 探讨了2种CaSiO_(3)加填印刷纸的脱墨性能。结果表明,以CaSiO_(3)为填料的1^(#)纸样和以CaSiO_(3)/滑石粉为填料的2^(#)纸样均具有较好的脱墨效果,二者浮选脱墨浆料得率相同,1^(#)浮选脱墨浆的白度为77.5%ISO,略高于2^(#)浮选脱墨浆的73.9%ISO,1^(#)浮选脱墨浆有效残余油墨浓度为81.24 mm^(2)/m^(2),略低于2^(#)浮选脱墨浆的115.96 mm^(2)/m^(2);在脱墨过程中,1^(#)纸样胶黏物去除效果略优于2^(#)纸样,2种纸样初始胶黏物含量均较低,不会对生产造成影响;2种纸样的碎解浆经浮选脱墨后纤维长度均有所降低,细小纤维含量增加,1^(#)浮选脱墨浆的纤维长度下降幅度略高于2^(#)浮选脱墨浆;受灰分影响,1^(#)浮选脱墨浆手抄片的强度指标较2^(#)浮选脱墨浆手抄片略差。 展开更多
关键词 casio_(3)加填纸 脱墨性能 白度 胶黏物 纤维形态
下载PDF
Three-dimensional ordered macroporous perovskite-type La_(1-x)K_xNiO_3 catalysts with enhanced catalytic activity for soot combustion: the Effect of K-substitution 被引量:8
13
作者 Xuelei Mei Jing Xiong +4 位作者 Yuechang Wei Chujun Wang Qiangqiang Wu Zhen Zhao Jian Liu 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2019年第5期722-732,共11页
Three-dimensional ordered macroporous (3DOM) La1?xKxNiO3 perovskite-type catalysts were successfully prepared by a colloidal crystal template method and characterized by scanning electron microscopy, transmission elec... Three-dimensional ordered macroporous (3DOM) La1?xKxNiO3 perovskite-type catalysts were successfully prepared by a colloidal crystal template method and characterized by scanning electron microscopy, transmission electron microscopy, high-resolution transmission electron microscopy, energy-dispersive X-ray scattering elemental mapping, X-ray diffraction, Raman and X-ray photoelectron spectroscopy, and temperature-programmed reduction of H2. Further, their catalytic activity in soot combustion was determined by temperature-programmed oxidation reaction. K substitution into the LaNiO3 lattice led to remarkably improved catalytic activity of this catalyst in soot combustion. Amongst various catalysts, La0.95K0.05NiO3 exhibited the highest activity in soot combustion (with its T50 and CO2 S values being 338 °C and 98.2%, respectively), which is comparable to the catalytic activities of Pt-based catalysts under the condition of poor contact between the soot and the catalyst. K-substitution improves the valence state of Ni and increases the number of oxygen vacancies, thereby leading to increased density of surface-active oxygen species. The active oxygen species play a vital role in catalyzing the elimination of soot. The perovskite-type La1?xKxNiO3 nanocatalysts with 3DOM structure without noble metals have potential for practical applications in the catalytic combustion of diesel soot particles. 展开更多
关键词 Three-dimensional ordered macroporous material LANIO3 Potassium perovskite Soot combustion
下载PDF
Ultra-stable CsPbBr3 Perovskite Nanosheets for X-Ray Imaging Screen 被引量:6
14
作者 Liangling Wang Kaifang Fu +3 位作者 Ruijia Sun Huqiang Lian Xun Hu Yuhai Zhang 《Nano-Micro Letters》 SCIE EI CAS CSCD 2019年第3期263-270,共8页
Wet chemistry methods,including hot-injection and precipitation methods,have emerged as major synthetic routes for high-quality perovskite nanocrystals in backlit display and scintillation applications.However,low che... Wet chemistry methods,including hot-injection and precipitation methods,have emerged as major synthetic routes for high-quality perovskite nanocrystals in backlit display and scintillation applications.However,low chemical yield hinders their upscale production for practical use.Meanwhile,the labile nature of halide-based perovskite poses a major challenge for long-term storage of perovskite nanocrystals.Herein,we report a green synthesis at room temperature for gram-scale production of CsPbBr3 nanosheets with minimum use of solvent,saving over 95% of the solvent for the unity mass nanocrystal production.The perovskite colloid exhibits record stability upon long-term storage for up to 8 months,preserving a photoluminescence quantum yield of 63% in solid state.Importantly,the colloidal nanosheets show self-assembly behavior upon slow solidification,generating a crack-free thin film in a large area.The uniform film was then demonstrated as an efficient scintillation screen for X-ray imaging.Our findings bring a scalable tool for synthesis of high-quality perovskite nanocrystals,which may inspire the industrial optoelectronic application of large-area perovskite film. 展开更多
关键词 CsPbBr3 perovskite NANOSHEETS SELF-ASSEMBLY X-RAY imaging SCREEN
下载PDF
Oxidative coupling of methane over LaAlO3 perovskite catalysts prepared by a co-precipitation method: Effect of co-precipitation pH value 被引量:5
15
作者 Yujin Sim Jihoon Yoo +1 位作者 Jeong-Myeong Ha Ji Chul Jung 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2019年第8期1-8,I0001,共9页
Oxidative coupling of methane(OCM) was conducted over LaAlO3X catalysts that were prepared by a coprecipitation method using different co-precipitation pH values(X = 6–10). The aim is to investigate the effect of p H... Oxidative coupling of methane(OCM) was conducted over LaAlO3X catalysts that were prepared by a coprecipitation method using different co-precipitation pH values(X = 6–10). The aim is to investigate the effect of p H values on the catalytic activity of La AlO3 catalysts in this reaction. The results showed that the co-precipitation pH value affected greatly on the formation of chemical species of precipitate precursors in the co-precipitation step, leading to different phases of the finally obtained LaAlO3 catalysts.When the co-precipitation pH value increased up to 8, the lanthanum-related phases such as La2 O3 and La(OH)3 were gradually formed as by-products, preventing the formation of LaAlO3 perovskite crystalline structure and facilitating the formation of oxygen vacancies on catalyst surface. However, at pH value of9 or higher, the lanthanum content in the precipitate precursor was increased greatly. Not LaAlO3 perovskite but lanthanum-related phases were developed as main phases, reducing their catalytic activities in this reaction. Among LaAlO3 catalysts, the one prepared at pH = 8 showed the highest C2 yield due to its well-developed oxygen vacancies and electrophilic lattice oxygen. Therefore, the co-precipitation pH value strongly affected the LaAlO3 catalyst activity in OCM reaction. A precious pH control should be required to prepare various perovskite catalysts for the OCM. 展开更多
关键词 LAALO3 perovskite OXIDATIVE coupling of METHANE CO-PRECIPITATION pH value
下载PDF
Efficient and stable planar all-inorganic perovskite solar cells based on high-quality CsPbBr3 films with controllable morphology 被引量:7
16
作者 Xiaojing Wan Ze Yu +6 位作者 Wenming Tian Fuzhi Huang Shengye Jin Xichuan Yang Yi-Bing Cheng Anders Hagfeldt Licheng Sun 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2020年第7期8-15,I0001,共9页
All-inorganic cesium lead bromide(CsPbBr3)perovskite is attracting growing interest as functional materials in photovoltaics and other optoelectronic devices due to its superb stability.However,the fabrication of high... All-inorganic cesium lead bromide(CsPbBr3)perovskite is attracting growing interest as functional materials in photovoltaics and other optoelectronic devices due to its superb stability.However,the fabrication of high-quality CsPbBr3 films still remains a big challenge by solution-process because of the low solubility of the cesium precursor in common solvents.Herein,we report a facile solution-processed approach to prepare high-quality CsPbBr3 perovskite films via a two-step spin-coating method,in which the Cs Br methanol/H2 O mixed solvent solution is spin-coated onto the lead bromide films,followed by an isopropanol-assisted post-treatment to regulate the crystallization process and to control the film morphology.In this fashion,dense and uniform CsPbBr3 films are obtained consisting of large crystalline domains with sizes up to microns and low defect density.The effectiveness of the resulting CsPbBr3 films is further examined in perovskite solar cells(PSCs)with a simplified planar architecture of fluorine–doped tin oxide/compact Ti O2/CsPbBr3/carbon,which deliver a maximum power conversion efficiency of 8.11%together with excellent thermal and humidity stability.The present work offers a simple and effective strategy in fabrication of high-quality CsPbBr3 films for efficient and stable PSCs as well as other optoelectronic devices. 展开更多
关键词 All-inorganic perovskite solar cells CsPbBr3 Morphology control Solution-processed Stability
下载PDF
Optimizing the Performance of CsPbI3-Based Perovskite Solar Cells via Doping a ZnO Electron Transport Layer Coupled with Interface Engineering 被引量:5
17
作者 Man Yue Jie Su +4 位作者 Peng Zhao Zhenhua Lin Jincheng Zhang Jingjing Chang Yue Hao 《Nano-Micro Letters》 SCIE EI CAS CSCD 2019年第4期605-618,共14页
Interface engineering has been regarded as an effective and noninvasive means to optimize the performance of perovskite solar cells(PSCs).Here,doping engineering of a ZnO electron transport layer(ETL)and CsPbI3/ZnO in... Interface engineering has been regarded as an effective and noninvasive means to optimize the performance of perovskite solar cells(PSCs).Here,doping engineering of a ZnO electron transport layer(ETL)and CsPbI3/ZnO interface engineering via introduction of an interfacial layer are employed to improve the performances of CsPbI3-based PSCs.The results show that when introducing a TiO2 buffer layer while increasing the ZnO layer doping concentration,the open-circuit voltage,power conversion efficiency,and fill factor of the CsPbI3-based PSCs can be improved to 1.31 V,21.06%,and 74.07%,respectively,which are superior to those of PSCs only modified by the TiO2 buffer layer or high-concentration doping of ZnO layer.On the one hand,the buffer layer relieves the band bending and structural disorder of CsPbI3.On the other hand,the increased doping concentration of the ZnO layer improves the conductivity of the TiO2/ZnO bilayer ETL because of the strong interaction between the TiO2 and ZnO layers.However,such phenomena are not observed for those of a PCBM/ZnO bilayer ETL because of the weak interlayer interaction of the PCBM/ZnO interface.These results provide a comprehensive understanding of the CsPbI3/ZnO interface and suggest a guideline to design high-performance PSCs. 展开更多
关键词 All-inorganic CsPbI3 perovskites INTERFACE ENGINEERING DOPING ZNO Simulation
下载PDF
Device simulation of lead-free CH_3NH_3SnI_3 perovskite solar cells with high efficiency 被引量:5
18
作者 杜会静 王韦超 朱键卓 《Chinese Physics B》 SCIE EI CAS CSCD 2016年第10期554-561,共8页
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.CHNHSnIis a viable alternative to CHNHPbX,because it has a narrower band gap... 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.CHNHSnIis a viable alternative to CHNHPbX,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 CHNHSnIbased 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 × 10cm~3) and the defect density(1 × 10cm~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 Jof 31.59 mA/cm~2,Vof 0.92 V,FF of 79.99%,and PCE of 23.36%.The results show that the lead-free CHNHSnIPSC is a potential environmentally friendly solar cell with high efficiency.Improving the Snstability and reducing the defect density of CHNHSnIare key issues for the future research,which can be solved by improving the fabrication and encapsulation process of the cell. 展开更多
关键词 CH_3NH_3SnI_3 perovskite solar cells device simulation high efficiency
下载PDF
下地幔CaSiO_(3)钙钛矿的稳定性及其对LLSVPs的启示
19
作者 肖婷婷 张飞武 《矿物学报》 CAS CSCD 北大核心 2022年第1期121-128,共8页
LLSVPs的成因是当前固体地球科学研究的前沿热点,对这一成因的认识仍然存在很大的争议。认识LLSVPs的成因,对了解全球地幔对流性质、下地幔热结构以及化学物质的运输和演化等具有重要的科学意义。CaSiO_(3)钙钛矿(Ca-Pv)作为下地幔最丰... LLSVPs的成因是当前固体地球科学研究的前沿热点,对这一成因的认识仍然存在很大的争议。认识LLSVPs的成因,对了解全球地幔对流性质、下地幔热结构以及化学物质的运输和演化等具有重要的科学意义。CaSiO_(3)钙钛矿(Ca-Pv)作为下地幔最丰富的矿物之一,也是近年来学术界关注的热点。Ca-Pv在下地幔条件下的晶体结构仍然是目前研究的主要问题之一,Ca-Pv能否与其结构和化学式都相近的含铁布里奇曼石形成固溶体?本文通过第一性原理地球化学计算,研究了Ca-Pv及固溶体的基态稳定性,弹性性质和地震波波速特性。研究结果表明,在20~120 GPa压力下,Ca-Pv最稳定的基态结构为四方结构。基态下Ca-Pv的弹性波速值低于Mg-Pv约5%。与非互溶体系相比,x(Fe)为0%~10%的固溶体体系,引起了-2%~0%的剪切波波速负异常;-1.2%~0%的纵波波速负异常;-0.45~0.15%的体波速异常。因此,推测固溶体Mg_(1-x-y)Ca_(x)Fe_(y)SiO_(3)可能作为下地幔LLSVPs的候选矿物组分之一。 展开更多
关键词 下地幔 casio_(3)钙钛矿 固溶体 LLSVPs
下载PDF
Anti-solvent engineering for efficient semitransparent CH3NH3PbBr3 perovskite solar cells for greenhouse applications 被引量:3
20
作者 Waqas Siddique Subhani Kai Wang +4 位作者 Minyong Du Xiuli Wang Ningyi Yuan Jianning Ding Shengzhong(Frank)Liu 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2019年第7期12-19,共8页
With ideal combination of benefits that selectively converts high photon energy spectrum into electricity while transmitting low energy photo ns for photos yn thesis,the CH3NH3PbBr3 perovskite solar cell(BPSC)is a pro... With ideal combination of benefits that selectively converts high photon energy spectrum into electricity while transmitting low energy photo ns for photos yn thesis,the CH3NH3PbBr3 perovskite solar cell(BPSC)is a promising candidate for efficient greenhouse based building integrated photovoltaic(BIPV)applications.However,the efficiency of BPSCs is still much lower than their theoretical efficiency.In general,interface band alignment is regarded as the vital factor of the BPSCs whereas only few reports on enhancing perovskite film quality.In this work,highly efficient BPSCs were fabricated by improving the crystallization process of CH3NH3PbBr3 with the assistance of anti-solvents.A new anti-solvent of diphenyl ether(DPE)was developed for its strong interaction with the solvents in the perovskite precursor solution.By using the anti-solvent of DPE,trap-state density of the CH3NH3PbBr3 film is reduced and the electron lifetime is enhanced along with the large-grain crystals compared with the samples from conventional anti-solvent of chlorobenzene.Upon preliminary optimization,the efficiencies of typical and semitransparent BPSCs are improved to as high as 9.54%and 7.51%,respectively.Optical absorption measurement demonstrates that the cell without metal electrode shows 80%transparency in the wavelength range of 550-1000 nm that is perfect for greenhouse vegetation.Considering that the cell absorbs light in the blue spectrum before 550 nm,it offers very high solar cell efficiency with only 17.8%of total photons,while over 60%of total photons can transm让through for photosynthesis if a transparent electrode can be obtained such as indium doped SnO2. 展开更多
关键词 CH3NH3PbBr3 SEMITRANSPARENT perovskite solar cell ANTI-SOLVENT GREENHOUSE
下载PDF
上一页 1 2 26 下一页 到第
使用帮助 返回顶部