课题基金 / 基金详情

三维纳米阵列铁电光伏电池的制备与研究

批准号:
51702130
项目类别:
青年科学基金项目
资助金额:
24.0 万元
负责人:
曹大威
依托单位:
学科分类:
无机非金属能量转换与存储材料
结题年份:
2020
批准年份:
2017
项目状态:
已结题
项目参与者:
杨莹、刘圆、陈明明、胡欣智、童唯扬、聂之峰、刘啸

项目摘要

结项摘要

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中文摘要
铁电材料由于具有反常光伏效应(abnormal photovoltaic effect)而备受关注,与传统的pn结所不同的是,铁电光伏是一种体效应,光生载流子能在整个材料中被分离开来,光生电压不受禁带宽度的限制,內建电场达到1000 ~ 100000 V/cm,理论上具有较高的光电转换效率。然而,由于其光生电流较低,以至铁电薄膜的光电转换效率还不够高。针对这个问题,本项目以提高铁电材料光电转换效率为目标,率先提出利用阳极氧化铝模板构筑三维纳米阵列的铁电光伏器件,并对铁电/电极界面进行修饰。基于纳米结构的优势(如比表面积大、陷光效应、缩短载流子扩散长度等),结合界面修饰,消除界面肖特基势垒,来提高可见光利用率,并实现光生电子/空穴的有效分离,探索提升铁电材料光电转换效率的规律,分析其物理过程和机理,研制出高效的铁电光伏电池。
英文摘要
Ferroelectric materials exhibiting abnormal photovoltaic effect is one of the foci of photovoltaic research. Unlike the traditional pn junction, ferroelectric photovoltaic is a kind of bulk effect, in which photogenerated carriers can be separated in the whole material, the photogenerated voltage is not limited by the band gap and the built-in electric field can approach to 1000 ~ 100000 V/cm. Theoretically, this comes to a high photo-to-electric conversion efficiency. However, due to its low photogenerated current, the photo-to-electric conversion efficiency of ferroelectric thin film is not high enough. In view of this problem and improving the photo-to-electric conversion efficiency of ferroelectric materials, three-dimensional nano-array ferroelectric photovoltaic devices by anodic aluminum oxide will be built firstly in this project, and then the ferroelectric/electrode interface will be improved. Based on the advantages of nanostructures ,such as large surface area, light trapping effect, shorting carrier diffusion length, etc., combined with the interface modification (the interface Schottky barrier is eliminated), the utilization efficiency of visible light will be improved and the separation of photoelectrons from vacancies will be promoted. The law of enhancing the efficiency of photoelectric conversion of ferroelectric materials will be explored as well as its physical processes and mechanisms to develop a high efficient ferroelectric photovoltaic cells.
铁电材料由于具有反常光伏效应而备受关注,与传统的pn结所不同的是,铁电光伏是一种体效应,形成的內建电场贯穿整个材料,能够达到1000 ~ 100000 V/cm,光生电压不受禁带宽度的限制,理论上具有较高的电荷分离效率。但是其光生电流较低,以至铁基器件的效率很低。因此,本项目提出利用纳米结构的优势(如比表面积大、陷光效应、缩短载流子扩散长度等),结合界面修饰,来提高铁电材料的光电转换效率。本项目主要研究内容包括铁电材料(BFO和PZT)三维纳米结构的制备,界面调控(包括纳米颗粒修饰、异质结构建等),双极性光电流的机理探究,铁电材料极性电场的应用研究等。研究结果发现,相对于平面结构的薄膜来说,三维纳米结构的铁电材料光电流得到有效的提高(5倍,0.6 V vs RHE);PZT能够实现双极性光电流(阳极电流和阴极电流);铁电材料极化引起的内建电场能有效分离电子空穴对,使TiO2等材料的光电化学性能得到大幅提升,有助于铁电的应用发展。
期刊论文列表
专著列表
科研奖励列表
会议论文列表
专利列表
Fe0.8Zn0.2 Nanoparticles Wrapped in Mesoporous Nitrogen-Doped Carbon Layers as Electrocatalysts for an Efficient Oxygen Reduction Reaction
包裹在介孔氮掺杂碳层中的 Fe0.8Zn0.2 纳米颗粒作为高效氧还原反应的电催化剂
DOI: 10.1021/acs.energyfuels.0c03069
发表时间: 2020-12
期刊: Energy Fuels
影响因子: --
作者: [Weigeng Ke, Jinyu Yang, Yuan Liu, Jie Chen, Xiang Deng, Mingming Chen, Dawei Cao]
通讯作者: Dawei Cao
Observation of plasmon boosted photoelectrochemical activities on single Au/Cu2O nanoelectrode
单个 Au/Cu2O 纳米电极上等离激元增强光电化学活性的观察
DOI: 10.1088/1361-6463/ab6e9f
发表时间: 2020
期刊: Journal of Physics D: Applied Physics
影响因子: --
作者: [Qian Yuanyuan, Liu Jun, Zhang Bo-tao, Huang Yanbin, Cao Dawei, Ren Kuankuan, Tang Haoran, Sun Yang, Li Qicong, Yang Cheng, Qu Shengchun, Wang Zhijie, Li Yongxin]
通讯作者: Li Yongxin
Optical Property Behaviors of CsPbBr3 Colloidal Nanoparticles in a Ligand-Assisted Reprecipitation Process
CsPbBr3 胶体纳米粒子在配体辅助再沉淀过程中的光学性质行为
DOI: 10.1021/acs.cgd.0c00143
发表时间: 2020-08-05
期刊: CRYSTAL GROWTH & DESIGN
影响因子: 3.8
作者: [Chen, Mingming, Yuan, Youwen, Cao, Dawei]
通讯作者: Cao, Dawei
Exciton recombination mechanisms in solution grown single crystalline CsPbBr3 perovskite
溶液生长单晶 CsPbBr3 钙钛矿中的激子复合机制
DOI: 10.1016/j.jlumin.2020.117471
发表时间: 2020-10
期刊: Journal of Luminescence
影响因子: 3.6
作者: [Yuan Youwen, Chen Mingming, Yang Shuaiheng, Shen Xuemin, Liu Yuan, Cao Dawei]
通讯作者: Cao Dawei
15
    基于自激发耦合双势场的Z-scheme产氢光电极构筑及其界面动态调控机制研究
    • 批准号:
      --
    • 项目类别:
      面上项目
    • 资助金额:
      54万元
    • 批准年份:
      2022
    • 负责人:
      曹大威
    • 依托单位:
    国内基金
    海外基金