您的位置: 专家智库 > >

国家自然科学基金(s60876046)

作品数:4 被引量:11H指数:2
发文基金:国家自然科学基金天津市自然科学基金更多>>
相关领域:电气工程一般工业技术电子电信更多>>

文献类型

  • 4篇中文期刊文章

领域

  • 3篇电气工程
  • 1篇电子电信
  • 1篇一般工业技术

主题

  • 2篇BUTYRI...
  • 2篇INVERT...
  • 1篇ORGANI...
  • 1篇TRANSM...
  • 1篇ZINC_O...
  • 1篇ZNO
  • 1篇ADDITI...
  • 1篇AG_NAN...
  • 1篇AIC
  • 1篇CHEMIC...
  • 1篇CONTRO...
  • 1篇ENHANC...
  • 1篇INDIUM
  • 1篇LTA
  • 1篇MOO
  • 1篇AS
  • 1篇HO
  • 1篇NANOPA...
  • 1篇OVO
  • 1篇PLASMO...

传媒

  • 3篇Optoel...
  • 1篇Journa...

年份

  • 1篇2014
  • 1篇2012
  • 2篇2011
4 条 记 录,以下是 1-4
排序方式:
Performance improvement of organic bulk heterojunction solar cells by using dihydroxybenzene as additive被引量:2
2011年
We report the enhanced performance of organic solar cells(OSCs) based on regioregular poly(3-hexylthiophene)(P3HT) and methanofullerene [6,6]-phenyl C61-butyric acid methyl ester(PCBM) blend by using dihydroxybenzene as additive in the active layer.The effect of the content of the additives on electrical characteristics of the device is studied.The device with 0.2 wt% dihydroxybenzene additive achieves the best power conversion efficiency(PCE) of 4.58% with Jsc of 12.5 mA/cm2,Voc of 0.65 V,and FF of 66.6% under simulated solar illumination of AM 1.5G(100 mW/cm2),compared with the control device with PCE of 3.39%(35% improvement compared with the control device).The XRD measurement reveals that the addition of additives induces the crystallization of P3HT and establishes good inter-network to increase the contact area of donor and acceptor,and then helps charge to be effectively transferred to the electrode to reduce the chance of recombination.All evidences indicate that the dihydroxybenzene is likely to be a promising new type additive that can enhance the performance of organic bulk heterojunction solar cells.
姚聪杨利营王亚凌秦文静印寿根张凤玲
关键词:ADDITIVESCONTROL
An air-stable inverted photovoltaic device using ZnO as the electron selective layer and MoO_3 as the blocking layer被引量:5
2011年
An air-stable photovoltaic device based on znic oxide nanoparticles (ZNP) in an inverted structure of indium tin oxide (ITO)/ZnO/poly (3-hexylthiophene) (P3HT): [6,6]-phenyl C61-butyric acid methyl ester (PCBM)/MoO3/Ag is studied. We fm.d that the optimum thickness of the MoO3 layer is 2 nm. When the MoO3 blocking layer is introduced, the fill factor of the devices is increased from 29% to 40%, the power conversion efficiency is directly promoted from 0.35% to 1.27%.The stability under ambient conditions of this inverted structure device much is better due to the improved stability at the polymer/Ag interface. The enhancement is attributed to the high carriers mobility and suitable band gap of MoO3 layer.
宋朋飞秦文静丁国静闫齐齐杨利营印寿根
Annealing Effect of ZnO on the Performance of Inverted Organic Photovoltaic Devices
2014年
ZnO nanoparticles films were prepared via sol-gel process and incorporated into inverted organic photovoltaic devices with a structure of ITO/ZnO/P3HT:PCBM/MoO3/Ag, in which ZnO film served as an electron selective layer. The effects of annealing temperature of ZnO film on the device performance were investigated. When the annealing temperature was 300℃, a well-arranged ZnO thin film was obtained, and the optimized device had doubled short circuit current density (Jsc) and seven-fold higher power conversion efficiency (PCE) compared to the devices without ZnO film. This improvement could be attributed to the enlarged interfacial area of ZnO/active layer and better energy band matching which causes an efficient electron extraction and a decreased interface energy barrier. At particularly high annealing temperature, dramatically increased sheet resistance of indium tin oxide (ITO) was found to cause PCE deterioration. Our finding indicates that it is highly important to investigate both morphology and electrical effects for understanding and optimizing organic photovoltaic (OPV) performance.
Wenjing QinGuojing DingXinrui XuLiying YangShougen Yin
关键词:ZNO
Reusing of transmitted light by localized surface plasmon enhancing of Ag nanoparticles in organic solar cells被引量:4
2012年
Silver nanoparticles(Ag NPs)are synthesized with chemical method,which are introduced into the traditional organic photovoltaic(OPV)structure.The experimental results show that both the optical and photoelectric properties are en-hanced because of localized surface plasmon(LSP)effects of Ag NPs.The advantage of adding Ag NPs behind active layer in incident direction is discussed.We believe this route can avoid absorption shadow and enhance the reusing of transmitted light of active layer.The average short-circuit current(J SC)of the optimum device can be raised from 9.23mA/cm2 to 10.84mA/cm2,and the energy converting efficiency(PCE)can be raised from 3.22% to 3.85%.
王超秦文静马春宇张强杨利营印寿根
关键词:NANOPARTICLESPLASMONS
共1页<1>
聚类工具0