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国家自然科学基金(51372119)

作品数:12 被引量:18H指数:2
相关作者:李永涛李兴鳌熊建功王锦卞宝安更多>>
相关机构:南京邮电大学盐城工学院江南大学更多>>
发文基金:国家自然科学基金中国博士后科学基金长江学者和创新团队发展计划更多>>
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12 条 记 录,以下是 1-10
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多铁性材料Bi0.90La0.10Fe0.95R0.05O3(R=Co,Mn)的同步辐射研究
2017年
利用溶胶一凝胶法制得多铁性材料样品Bi0.90La0.10Fe0.95R0.05O3(R=Co,Mn)。X射线衍射结果表明,La、Mn离子共掺杂样品的晶体结构发生了转变。VSM数据显示:La、Mn和La、Co共掺后样品与母体材料BiFeO3相比较,磁性有明显的提高。且La、Co共掺的样品相比于La、Mn共掺杂的样品,其磁性更强。X射线吸收精细结构研究结果表明:La、Mn和La、Co共掺都未对Fe原子的局域结构产生影响。Mn、Co离子的所处的局域结构却不同。
孔令仪王智会赵弋菲熊建功孙泽浩孙祥周梦谣李永涛
关键词:磁性局域结构X射线吸收精细结构
Au nanorods-incorporated plasmonic-enhanced inverted organic solar cells
2015年
The effect of Au nanorods(NRs) on optical-to-electric conversion efficiency is investigated in inverted polymer solar cells, in which Au NRs are sandwiched between two layers of Zn O. Accompanied by the optimization of thickness of Zn O covered on Au NRs, a high-power conversion efficiency of 3.60% and an enhanced short-circuit current density(J SC) of10.87 m A/cm2 are achieved in the poly(3-hexylthiophene): [6,6]-phenyl-C61-butyric acid methyl ester(P3HT:PC60BM)-based inverted cell and the power conversion efficiency(PCE) is enhanced by 19.6% compared with the control device. The detailed analyses of the light absorption characteristics, the simulated scattering induced by Au NRs, and the electromagnetic field around Au NRs show that the absorption improvement in the photoactive layer due to the light scattering from the longitudinal axis and the near-field increase around Au NRs induced by localized surface plasmon resonance plays a key role in enhancing the performances.
彭玲梅杨陈淑芬张玉佩郝敬昱邓玲玲黄维
关键词:有机太阳能电池等离子体增强功率转换效率短路电流密度
基于石墨烯电极的Co-Salophene分子器件的自旋输运被引量:2
2017年
采用基于非平衡格林函数结合第一性原理的密度泛函理论的计算方法,研究了基于锯齿型石墨纳米带电极的Co-Salophene分子器件的自旋极化输运性质.计算结果表明,当左右电极为平行自旋结构时,自旋向上的电流明显大于自旋向下的电流,自旋向下的电流在[-1V,1V]偏压下接近零,分子器件表现出优异的自旋过滤效应.与此同时,在自旋向上电流中发现负微分电阻效应.当左右电极为反平行自旋结构时,器件表现出双自旋过滤和双自旋分子整流效应.除此之外,整个分子器件还表现出较高的巨磁阻效应.通过分析器件的自旋极化透射谱、局域态密度、电极的能带结构和分子自洽投影哈密顿量,详细解释该分子器件表现出众多特性的内在机理.研究结果对设计多功能分子器件具有重要的借鉴意义.
陈伟陈润峰李永涛俞之舟徐宁卞宝安李兴鳌汪联辉
关键词:自旋输运分子器件石墨烯纳米带
Work function engineering to enhance open-circuit voltage in planar perovskite solar cells by g-C_(3)N_(4) nanosheets被引量:1
2021年
Enhancement of open-circuit voltage(Voc)is an effective way to improve power conversion efficiency(PCE)of the perovskite solar cells(PSCs).Theoretically,work function engineering of TiO2 electron transport layer can reduce both the loss of Voc and current hysteresis in PSCs.In this work,two-dimensional g-C_(3)N_(4) nanosheets were adopted to modify the compact TiO2 layers in planar PSCs,which can finely tune the work function(WF)and further improve the energy level alignment at the interface to enhance the Voc and diminish the hysteresis.Meanwhile,the quality of perovskite films and charge transfer of the devices were improved by g-C_(3)N_(4) nanosheets.Therefore,the PCE of the planar PSCs was champed to 19.55%without obvious hysteresis compared with the initial 15.81%,mainly owing to the remarkable improvement of VOC from 1.01 to 1.11 V.In addition,the stability of the devices was obviously improved.The results demonstrate an effective strategy of W_(F) engineering to enhance Voc and diminish hysteresis phenomenon for improving the performance of PSCs.
Jian YangLiang ChuRuiyuan HuWei LiuNanjing LiuYuhui MaWaqar AhmadXing’ao Li
Sr、Co共掺多铁性材料BiFeO_3的性能
2018年
利用溶胶-凝胶法制备了BiFeO_3、Bi_(0.95)Sr_(0.05)FeO_3、BiFe_(0.95)Co_(0.05)O_3和Bi_(0.95)Sr_(0.05)Fe_(0.95)Co_(0.05)O_3样品,并对样品的结构、形态、元素含量、铁电性和铁磁性进行了研究。结果表明,共掺杂样品Bi_(0.95)Sr_(0.05)Fe_(0.95)Co_(0.05)O_3的晶体结构发生了变化,铁电性明显增强,但漏电流变大;Bi_(0.95)Sr_(0.05)FeO_3、BiFe_(0.95)Co_(0.05)O_3样品的磁性都有所增强,但Bi_(0.95)Sr_(0.05)Fe_(0.95)Co_(0.05)O_3样品的磁性并没有随着Sr和Co的共同掺杂而进一步提高,从氧空位浓度、Fe-O共价键结构的变化和晶体尺寸三个方面对产生这种现象的原因进行了分析。
熊建功张创伟王康孔令仪赵弋菲陈龙李永涛
关键词:铁电性铁磁性拉曼光谱
Novel photoelectric material of perovskite-like(CH_(3))_(3)SPbI_(3) nanorod arrays with high stability
2021年
Organometallic halide perovskite materials make great achievements in optoelectronic fields,especially in solar cells,in which the organic cations contain amine components.However,the amine with NàH bonds is easily hydrolyzed with moisture in the air,weakening the perovskite materials stability.It is desirable to develop other non-amine stable perovskite materials.In this work,sulfur-based perovskite-like(CH_(3))_(3)SPbI_(3) nanorod arrays were fabricated by a solution-processed method,which can be indexed hexagonal crystal structure in the space group P63 mc.The binding force is exceptionally strong between the non-amine(CH_(3))_(3) S+and[PbI_(6)]_(4)-octahedral,leading to high stability of(CH_(3))_(3)SPbI_(3).The(CH_(3))_(3)SPbI_(3) nanorod arrays can keep the morphology and crystal structure in an ambient atmosphere over 60 days.In addition,the(CH_(3))_(3)SPbI_(3) nanorod arrays can offer direct charge transfer channels,which show excellent optoelectronic properties.The(CH_(3))_(3)SPbI_(3) nanorod arrays-based solar cells with VOx hole transfer layers achieved a power conversion efficiency of 2.07%with negligible hysteresis.And the(CH_(3))_(3)SPbI_(3) nanorod arrays were also effectively applied in photodetectors with interdigitated gold electrodes.This work demonstrates that sulfur-based perovskite-like(CH_(3))_(3)SPbI_(3) is a novel promising stable compound with great potential for practical optoelectronic applications.
Ruiyuan HuChuangye GeLiang ChuYifei FengShanshan XiaoYuhui MaWei LiuXing'ao LiMohammad Khaja Nazeeruddin
关键词:PHOTODETECTORS
Lead?Free Halide Double Perovskite Materials: A New Superstar Toward Green and Stable Optoelectronic Applications被引量:8
2019年
Lead-based halide perovskites have emerged as excellent semiconductors for a broad range of optoelectronic applications, such as photovoltaics, lighting, lasing and photon detection. However, toxicity of lead and poor stability still represent significant challenges. Fortunately, halide double perovskite materials with formula of A_2M(I)M(III)X_6 or A_2M(IV)X_6 could be potentially regarded as stable and green alternatives for optoelectronic applications, where two divalent lead ions are substituted by combining one monovalent and one trivalent ions, or one tetravalent ion. Here, the article provides an up-to-date review on the developments of halide double perovskite materials and their related optoelectronic applications including photodetectors, X-ray detectors, photocatalyst, light-emitting diodes and solar cells. The synthesized halide double perovskite materials exhibit exceptional stability, and a few possess superior optoelectronic properties. However, the number of synthesized halide double perovskites is limited, and more limited materials have been developed for optoelectronic applications to date. In addition, the band structures and carrier transport properties of the materials are still not desired, and the films still manifest low quality for photovoltaic applications. Therefore, we propose that continuing e orts are needed to develop more halide double perovskites, modulate the properties and grow high-quality films, with the aim of opening the wild practical applications.
Liang ChuWaqar AhmadWei LiuJian YangRui ZhangYan SunJianping YangXing'ao Li
关键词:HALIDEPEROVSKITEOPTOELECTRONICAPPLICATIONSTOXICITY
高校危险品仓库信息化管理系统研究被引量:2
2014年
本文着眼实验室信息化、网络化建设与管理,研究了在开发危险品仓库管理系统过程中涉及到的数据查询问题,以Visual Basic为开发平台,提出了"交集"的程序设计思路,极大地提高了仓库管理系统在信息查询过程中的检索速度,并完成了危险品仓库的信息化管理系统的开发,实现了危险品仓库的信息化、数字化管理。利用该管理系统可使高校危险品仓库的管理,实现检索迅速、可靠性高、处理信息量大,减少工作人员的数量,极大地提高仓库管理效率,有利于形成科学化、正规化的管理。
王锦周舟李兴鳌
关键词:信息化管理系统
强自旋轨道耦合化合物Sr2IrO4的制备与表征被引量:1
2014年
采用传统固相反应法,成功制备了Sr2IrO4化合物,并用X射线衍射(XRD)和扫描电子显微镜(SEM)对所制备的样品进行了表征。通过改变煅烧时间和煅烧温度探索了Sr2IrO4化合物的最优制备工艺。XRD和SEM分析表明,在最优制备工艺下得到具有结晶度高、颗粒形状规则、大小分布均匀的纯相Sr2IrO4样品。
厉建峥刘胜利王海云李根池庆贞苏丹丹李永涛张红光程杰李兴鳌
关键词:固相反应法X射线衍射扫描电子显微镜
Perfection of Perovskite Grain Boundary Passivation by Rhodium Incorporation for Efficient and Stable Solar Cells被引量:4
2020年
Organic cation and halide anion defects are omnipresent in the perovskite films,which will destroy perovskite electronic structure and downgrade the properties of devices.Defect passivation in halide perovskites is crucial to the application of solar cells.Herein,tiny amounts of trivalent rhodium ion incorporation can help the nucleation of perovskite grain and passivate the defects in the grain boundaries,which can improve efficiency and stability of perovskite solar cells.Through first-principle calculations,rhodium ion incorporation into the perovskite structure can induce ordered arrangement and tune bandgap.In experiment,rhodium ion incorporation with perovskite can contribute to preparing larger crystalline and uniform film,reducing trap-state density and enlarging charge carrier lifetime.After optimizing the content of 1% rhodium,the devices achieved an efficiency up to 20.71% without obvious hysteresis,from 19.09% of that pristine perovskite.In addition,the unencapsulated solar cells maintain 92% of its initial efficiency after 500 h in dry air.This work highlights the advantages of trivalent rhodium ion incorporation in the characteristics of perovskite solar cells,which will promote the future industrial application.
Wei LiuNanjing LiuShilei JiHongfeng HuaYuhui MaRuiyuan HuJian ZhangLiang ChuXing’ao LiWei Huang
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