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材料导报  2018, Vol. 32 Issue (15): 2538-2541    https://doi.org/10.11896/j.issn.1005-023X.2018.15.002
  材料与可持续发展(一)—— 面向洁净能源的先进材料 |
吩噻嗪和吩噁嗪给电子体在染料敏化太阳能电池中的性能对比分析
谭海军1,2, 何敬文1, 裴海睿1, 李和平1, 张淑芬3, 张淑华1,2
1 桂林理工大学化学与生物工程学院,广西电磁化学功能物质重点实验室,桂林541006;
2 桂林理工大学,广西有色金属
隐伏矿床勘查及材料开发协同创新中心,桂林 541006;
3 大连理工大学精细化工重点实验室,大连116024
Phenothiazine and Phenoxazine Sensitizer Donor Units: a Comparative Analysis with an Application to Dye-sensitized Solar Cells
TAN Haijun1,2, HE Jingwen1, PEI Hairui1, LI Heping1, ZHANG Shufen3, ZHANG Shuhua1,2
1 Guangxi Key Laboratory of Electrochemical and Magneto-chemical Functional Materials, College of Chemistry andBioengineering, Guilin University of Technology, Guilin 541006;
2 Collaborative Innovation Center for Exploration ofHidden Nonferrous Metal Deposits and Development of New Materials in Guangxi, Guilin University of Technology,Guilin 541006;
3 State Key Laboratory of Fine Chemicals, Dalian University of Technology, Dalian 116024
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摘要 本工作将两种氮杂蒽单元(吩噻嗪和吩噁嗪)应用到染料分子中,制备了两种简单的染料分子POZ-2与PTZ-2,重点对比分析了它们的光物理和电化学性能,并将两种染料分子应用到染料敏化太阳能电池中,分析它们光伏性能之间的差异。结果表明,基于吩噁嗪单元的染料分子POZ-2各方面性能(η=6.6%)皆优于基于吩噻嗪单元的染料分子PTZ-2(η=4.9%)。
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谭海军
何敬文
裴海睿
李和平
张淑芬
张淑华
关键词:  吩噻嗪  吩噁嗪  染料敏化太阳能电池  对比分析    
Abstract: The present work aims to provide a comparison between the two organic D-π-A sensitizer donor units, i.e. phenot-hiazine and phenoxazine, for the appliance of dye-sensitized solar cells (DSSC). We synthesized two sensitizers (POZ-2 and PTZ-2) with simple molecular structure and determined their photophysical and electrochemical properties, and then used these two dyes to fabricate DSSCs and investigate the devices’ photovoltaic properties. Our experiment confirmed the superior performances of dye POZ-2 along with a higher power conversion efficiency (η=6.6%) compared with dye PTZ-2 (η=4.9%) under standard illumination (Global air mass 1.5).
Key words:  phenothiazine    phenoxazine    dye-sensitized solar cell    comparative analysis
               出版日期:  2018-08-10      发布日期:  2018-08-09
ZTFLH:  TM23  
基金资助: 国家自然科学基金(21663010);广西自然科学基金(2015GXNSFBA139029);广西特聘专家团队专项经费资助
通讯作者:  张淑华:通信作者,男,1970年生,博士,教授,主要从事功能材料的设计、合成及性能探索研究 E-mail:zsh720108@163.com   
作者简介:  谭海军:男,1983年生,博士,讲师,主要从事有机光电子材料与器件 E-mail:navytan2007@126.com
引用本文:    
谭海军, 何敬文, 裴海睿, 李和平, 张淑芬, 张淑华. 吩噻嗪和吩噁嗪给电子体在染料敏化太阳能电池中的性能对比分析[J]. 材料导报, 2018, 32(15): 2538-2541.
TAN Haijun, HE Jingwen, PEI Hairui, LI Heping, ZHANG Shufen, ZHANG Shuhua. Phenothiazine and Phenoxazine Sensitizer Donor Units: a Comparative Analysis with an Application to Dye-sensitized Solar Cells. Materials Reports, 2018, 32(15): 2538-2541.
链接本文:  
http://www.mater-rep.com/CN/10.11896/j.issn.1005-023X.2018.15.002  或          http://www.mater-rep.com/CN/Y2018/V32/I15/2538
20181223153645  
1 O’Regan B, Grätzel M, Fitzmaurice D. Optical electrochemistry Ⅰ: Steady-state spectroscopy of conduction-band electrons in a metal oxide semiconductor electrode[J].Chemical Physics Letters,1991,183(1-2):89.
2 He J, Anders Hagfeldt A, Lindquist S E, et al. Phthalocyanine-sensitized nanostructured TiO2 electrodes prepared by a novel anchoring method[J].Langmuir,2001,17(9):2743.
3 Urbani M, Grätzel M, Nazeeruddin M K, et al. Meso-substituted porphyrins for dye-sensitized solar cells[J].Chemical Reviews,2014,114(24):12330.
4 Mathew S, Yella A, Gao P, et al. Dye-sensitized solar cells with 13% efficiency achieved through the molecular engineering of porphyrin sensitizers[J].Nature Chemistry,2014,6(3):242.
5 Chen C Y, Wang M, Li J Y, et al. Highly efficient light-harvesting ruthenium sensitizer for thin-film dye-sensitized solar cells[J].ACS Nano,2009,3(10):3103-9.
6 Ren Y, Sun D, Tsao H N, et al. A stable blue photosensitizer for color palette of dye-sensitized solar cells reaching 12.6% efficiency[J].Journal of the American Chemical Society,2018,140(7):2405.
7 Horiuchi T, Miura H, Uchida S. Highly-efficient metal-free organic dyes for dye-sensitized solar cells[J].Cheminform,2003,35(24):3036.
8 Zhu W, Wu Y, Wang S, et al. Organic D-A-π-A solar cell sensitizers with improved stability and spectral response[J].Advanced Functional Materials,2015,21(4):756.
9 Santhanamoorthi N, Lai K H, Taufany F, et al. Theoretical investigations of metal-free dyes for solar cells: Effects of electron donor and acceptor groups on sensitizers[J].Journal of Power Sources,2013,242(242):464.
10 Hagberg D P, Edvinsson T, Marinado T, et al. A novel organic chromophore for dye-sensitized nanostructured solar cells[J].Chemical Communications,2006,21(21):2245.
11 Shi D, Pootrakulchote N, Li R, et al. New efficiency records for stable dye-sensitized solar cells with low-volatility and ionic liquid electrolytes[J].Journal of Physical Chemistry C,2008,112(44):17046.
12 Zhang G, Bala H, Cheng Y, et al. High efficiency and stable dye-sensitized solar cells with an organic chromophore featuring a binary π-conjugated spacer[J].Chemical Communications,2009,16(16):2198.
13 Zeng W, Cao Y, Yu B, et al. Efficient dye-sensitized solar cells with an organic photosensitizer featuring orderly conjugated ethylene-dioxythiophene and dithienosilole blocks[J].Chemistry of Materials,2010,22(5):1915.
14 Polander L E, Yella A, Teuscher J, et al. Unravelling the potential for dithienopyrrole sensitizers in dye-sensitized solar cells[J].Che-mistry of Materials,2013,25(13):2642.
15 Mao J, He N, Ning Z, et al. Stable dyes containing double acceptors without cooh as anchors for highly efficient dye-sensitized solar cells[J].Angewandte Chemie International Edition,2012,51(39):9873.
16 Yang J, Guo F, Hua J, et al. Efficient and stable organic DSSC sensitizers bearing quinacridone and furan moieties as a planar π-spacer[J].Journal of Materials Chemistry,2012,22(46):24356.
17 Cai S, Hu X, Zhang Z, et al. Rigid triarylamine-based efficient DSSC sensitizers with high molar extinction coefficients[J].Journal of Materials Chemistry A,2013,1(15):4763.
18 Tan H, Cai D, Liu Z, et al. Effects of 2-hexylthiophene on the performance of triphenylamine based organic dye for dye-sensitized solar cells[J].Synthetic Metals,2016,214:56.
19 Koumura N, Wang Z S, Mori S, et al. Alkyl-functionalized organic dyes for efficient molecular photovoltaics[J].Journal of the American Chemical Society,2006,128(44):14256.
20 Wan Z, Jia C, Zhou L, et al. Influence of different arylamine electron donors in organic sensitizers for dye-sensitized solar cells[J].Dyes & Pigments,2012,95(1):41.
21 Tian H, Yang X, Cong J, et al. Tuning of phenoxazine chromophores for efficient organic dye-sensitized solar cells[J].Chemical Communications,2009,41(41):6288.
22 Tian H, Yang X, Chen R, et al. Phenothiazine derivatives for efficient organic dye-sensitized solar cells[J].Chemical Communications,2007,36(36):3741.
23 Tian Haining, Yang Xichuan, Chen Ruikui, et al. A metal-free “black dye” for panchromatic dye-sensitized solar cells[J].Energy & Environmental Science,2009,2(6):674.
24 Qu S, Wu W, Hua J, et al. New diketopyrrolopyrrole (DPP) dyes for efficient dye-sensitized solar cells[J].Journal of Physical Chemistry C,2010,114(2):1343.
25 Karlsson K M, Jiang X, Eriksson S K, et al. Phenoxazine dyes for dye-sensitized solar cells: Relationship between molecular structure and electron lifetime[J].Chemistry,2011,17(23):6415.
26 Chen C, Liao J Y, Chi Z, et al. Metal-free organic dyes derived from triphenylethylene for dye-sensitized solar cells: Tuning of the performance by phenothiazine and carbazole[J].Journal of Materials Chemistry,2012,22(18):8994.27 Tan H, Pan C, Wang G, et al. Synthesis and characterization of conjugated polymers with main-chain donors and pendent acceptors for dye-sensitized solar cells[J].RSC Advances,2013,3(37):16612.
28 Tan H, Pan C, Wang G, et al. A comparative study on properties of two phenoxazine-based dyes for dye-sensitized solar cells[J].Dyes & Pigments,2014,101(2):67.
29 Tan H, Pan C, Wang G, et al. Phenoxazine-based organic dyes with different chromophores for dye-sensitized solar cells[J].Organic Electronics,2013,14(11):2795.
30 Du J, Chen X L, Liu C C, et al. Highly transparent and conductive indium tin oxide thin films for solar cells grown by reactive thermal evaporation at low temperature[J].Applied Physics A,2014,117(2):815.
31 Xie S, Wang Y, Zhang Q, et al. Photocatalytic reduction of CO2 with H2O: Significant enhancement of the activity of Pt-TiO2 in CH4 formation by addition of MgO[J].Chemical Communications,2013,49(24):2451.
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