全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...
科学通报  2011 

采用磁控溅射法复制PapiliomaackiiMénétriés蝶的鳞片结构色

, PP. 3111-3114

Keywords: 蝴蝶,鳞片,结构色,磁控溅射

Full-Text   Cite this paper   Add to My Lib

Abstract:

通过扫描电子显微镜(SEM)和透射电子显微镜(TEM)试验观察,发现PapiliomaackiiMénétriés蝴蝶鳞片具有多层薄膜堆结构.通过磁控溅射法(MS),在以单晶硅片为基底材料上,采用ITO(90%In2O3+10%SnO2)与PolymethylMethacrylate(PMMA)两种材料复制了仿蝴蝶鳞片多层周期结构,并采用分光计对样品进行光学性能检测,试验结果显示MS法复制的鳞片与实际蝴蝶翅膀具有相同的结构色效果,故本文所提出的MS法可以用来探索制备仿生生物结构色样品,为其他光学装置的制备研究提供借鉴.

References

[1]  McPhedran R C, Nicorovici N A, McKenzie D R, et al. Structural colours through photonic crystals. Physica B, 2003, 338: 182-185
[2]  Parker A R. A vision for natural photonics. Phil Trans R Soc Lond A, 2004, 362: 2709-2720
[3]  Parker A R, Hegedus Z. Diffractive optics in spiders. J Opt A: Pure Appl Opt, 2003, 5: S111-S116
[4]  Brink D J, VanderBerg N G. Structural colors from the feathers of the bird Bostrychia hagedash. J Phys D: Appl Phys, 2004, 37: 813-818
[5]  Wong T H, Gupta M C. Color generation in butterfly wings and fabrication of such structures. Opt Lett, 2003, 28: 2342-2344
[6]  Vukusic P, Sambles J R. Color effects in bright butterflies. JSDC, 2000, 116: 376-380
[7]  Brink D J, Lee M E. Confined blue iridescence by a diffracting microstructure: An optical investigation of the Cynandra opis butterfly. Appl Opt, 1999, 38: 5282-5289
[8]  Brink D J, Smit J E, Lee M E, et al. Optical diffraction by the microstructure of the wing of a moth. Appl Opt, 1995, 34: 6049-6057
[9]  Plattner L. Optical properties of the scales of Morpho rhetenor butterflies: Theoretical and experimental investigation of the backscattering of light in the visible spectrum. J R Soc Interface, 2004, 1: 49-59
[10]  Vukusic P, Sambles J R, Lawrence C R. Color mixing in wing scales of a butterfly. Nature, 2000, 404: 457
[11]  Tada H, Mann S E, Miaoulis I N, et al. Effects of a butterfly scale microstructure on the iridescent color observed at different angles. Opt Express, 1999, 5: 87-92
[12]  Parker A R. 515 million years of structural color. J Opt A: Pure Appl Opt, 2000, 2: 15-28
[13]  Parker A R, Martini N. Structural color in animals-simple to complex optics. Opt Laser Technol, 2006, 38: 1-8
[14]  Kertész K, Bálint Z, Vértesy Z, et al. Photonic crystal type structures of biological origin: Structural and spectral characterization. Curr Appl Phys, 2006, 6: 252-258
[15]  Li B, Li Q, Zhou J, et al. Photonic structures in butterfly Thaumantis diores. Chin Sci Bull, 2004, 49: 2545-2546
[16]  Han Z W, Wu L Y, Qiu Z M, et al. Structural color in butterfly Apatura Ilia scales and the microstructure simulation of photonic crystal. J Bionic Eng, 2008, 5(Suppl): 14-19
[17]  Qin Y H, Liu F, Yin H W, et al. Photonic structure in the wings of Papilio Banor Gnesa. Chin Sci Bull, 2007, 52 : 3183-3188
[18]  Kang S H, Tai T Y, Fang T H. Replication of butterfly wing microstructures using molding lithography. Curr Appl Phys, 2010, 10: 625-630
[19]  Wang L, Sun H F, Zhou H H, et al. Preparation of BST nanocrystals embedded in SiO2 film by magnetron sputtering for nonvolatile memory applications. Chin Sci Bull, 2011, 56: 1139-1141
[20]  Tang N, Wang J L, Xu H X, et al. Optical characterization of ZnO thin films deposited by RF magnetron sputtering method. Sci China Ser E-Tech Sci, 2009, 52: 2200-2203
[21]  Tan T L, Wong D, Lee P. Iridescence of a shell of mollusk Haliotis Glabra. Opt Express, 2004, 12: 4847-4854
[22]  李勃, 周济, 李龙土, 等. 鲍鱼壳中的一维光子带隙结构[J].科学通报.2005, 50:1422-1424??浏览
[23]  Parker A R, Mckenzie D R, Large M C J. Multilayer reflectors in animals using green and gold beetles as contrasting examples. J Exp Biol, 1998, 201: 1307-1313
[24]  M?thger L M, Land M F, Siebeck U E, et al. Rapid colour changes in multilayer reflecting stripes in the paradise whiptail, Pentapodus paradiseus. J Exp Biol, 2003, 206: 3607-3613
[25]  Liao G L, Zuo H B, Cao Y B, et al. Optical properties of the micro/nano structures of Morpho butterfly wing scales. Sci China Tech Sci, 2010, 53: 175-181
[26]  BiróL P, Bálint Z, Kertész K, et al. Role of photonic-crystal-type structures in the thermal regulation of a Lycaenid butterfly sister species pair. Phys Rev E, 2003, 67: 0219071
[27]  Prum R O, Quinn T, Torres R H. Anatomically diverse butterfly scales all produce structural colours by coherent scattering. J Exp Biol, 2006, 209: 748-765
[28]  Kinoshita S, Yoshioka S, Kawagoe K. Mechanisms of structural color in the Morpho butterfly: Cooperation of regularity and irregularity in an iridescent scale. Proc R Soc Lond B, 2002, 269: 1417-1421

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133