Hierarchical Self-Assembly in Monoaxially Electrospun P3HT/PCBM Nanofibers

被引:10
|
作者
Dillard, Caitlin [1 ]
Singhal, Richa [1 ]
Kalra, Vibha [1 ]
机构
[1] Drexel Univ, Dept Chem & Biol Engn, Philadelphia, PA 19104 USA
基金
美国国家科学基金会;
关键词
donor-acceptor systems; hierarchical self-assembly; monoaxial electrospinning; nanofibers; transmission electron microscopy; POLYMER SOLAR-CELLS; ELECTRICAL-PROPERTIES; CARBON NANOFIBERS; CHARGE-TRANSPORT; PHASE-SEPARATION; THIN-FILMS; MORPHOLOGY; POLY(3-HEXYLTHIOPHENE); FABRICATION; P3HT;
D O I
10.1002/mame.201400214
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
We report monoaxial electrospinning and self-assembly characterization of poly(3-hexylthiophene)/[6,6]-phenyl-C61-butyric acid methyl ester (P3HT/PCBM) nanofibers. Nanofibers were directly compared to films (as made and annealed) to understand the effects of extensional forces and high evaporation rate inherent to electrospinning on nanoscale structure. X-ray scattering shows electrospinning can achieve improved crystallinity and reduced length scale of P3HT and PCBM phases. Due to extensional flow, co-continuous phases form along the fiber axis, as evident in transmission electron microscopy. To our knowledge, this is the first study to investigate monoaxially-spun, pure P3HT/PCBM nanofibers, a facile processing method with the potential to transform the field of wearable photovoltaics.
引用
收藏
页码:320 / 327
页数:8
相关论文
共 50 条
  • [41] Photoinduced absorption in P3HT/PCBM bulk heterostructures
    Kinoshita, Keita
    Kobayashi, Takashi
    Nagase, Takashi
    Naito, Hiroyoshi
    ECO-MATERIALS PROCESSING AND DESIGN XI, 2010, 658 : 503 - 506
  • [42] Conduction mechanisms of P3HT:PCBM solar cell
    Nolasco, Jairo C.
    Cabre, R.
    Pacios, Roberto
    Waldauf, Christoph
    Neophytou, Marios
    Palomares, Emilio
    Marsal, L. F.
    Pallares, J.
    PROCEEDINGS OF THE 2009 SPANISH CONFERENCE ON ELECTRON DEVICES, 2009, : 398 - +
  • [43] High efficiency P3HT/PCBM solar cell
    Inoue, K
    Ulbricht, R
    Madakasira, PC
    Zhou, MX
    Lee, SB
    Ferraris, J
    Zakhidov, AA
    MATERIALS FOR PHOTOVOLTAICS, 2005, 836 : 69 - 74
  • [44] Graphene doping of P3HT:PCBM photovoltaic devices
    Liu, Zhiyong
    He, Dawei
    Wang, Yongsheng
    Wu, Hongpeng
    Wang, Jigang
    SYNTHETIC METALS, 2010, 160 (9-10) : 1036 - 1039
  • [45] Role of interfacial interactions on diffusion of PCBM in P3HT
    Pani, Rakhee
    Bond, Benjamin
    Yingling, Yaroslava G.
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2012, 243
  • [46] Polymer solar cells: P3HT: PCBM and beyond
    Berger, P. R.
    Kim, M.
    JOURNAL OF RENEWABLE AND SUSTAINABLE ENERGY, 2018, 10 (01)
  • [47] Electrodes for GaOHPc:PCBM/P3HT:PCBM bulk heterojunction solar cell
    Kaulachs, I.
    Muzikante, I.
    Gerca, L.
    Shlihta, G.
    Shipkovs, P.
    Grehovs, V.
    Kalnachs, J.
    Roze, M.
    Rozite, G.
    Ivanova, A.
    CHEMICAL PHYSICS, 2012, 405 : 46 - 51
  • [48] Self-assembly of electrospun nanofibers into gradient honeycomb structures
    Yao, Tianyu
    Chen, Honglin
    Samal, Pinak
    Giselbrecht, Stefan
    Baker, Matthew B.
    Moroni, Lorenzo
    MATERIALS & DESIGN, 2019, 168
  • [49] High efficiency P3HT:PCBM solar cells with an inserted PCBM Layer
    Chi, Dan
    Qu, Shengchun
    Wang, Zhanguo
    Wang, Jizheng
    JOURNAL OF MATERIALS CHEMISTRY C, 2014, 2 (22) : 4383 - 4387
  • [50] Enhanced supramolecular self-assembly of P3HT by copolymerization with methacrylate attached liquid crystalline mesogens
    Pathiranage, Taniya Kekunawela
    Bhatt, Mahesh
    Magurudeniya, Harsha
    Rainbolt, Elizabeth
    Biewer, Michael
    Stefan, Mihaela
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2016, 251