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双壳纲韧带文石纤维的纳米形貌及光学反射特征 被引量:2

NANOMORPHOLOGIES OF ARAGONITIC FIBERS AND OPTICAL REFLECTIONS OF BIVALVE LIGAMENTS
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摘要 采用场发射扫描电镜及微型光纤光谱仪对21种双壳纲韧带中文石纤维的纳米形貌及光学反射特征进行研究,经过对比分析及统计结果表明:形貌上,文石纤维是由约30 nm^80 nm的亚颗粒沿纤维轴向排列而成,呈串珠状结构;纤维横截面常呈近六边形或浑圆形,但棕带仙女蛤、砗蚝及粒帽蚶呈长六边形。纤维直径及相邻纤维间距与生物种类有关,变化范围分别为65 nm^222 nm及88 nm^214 nm。除了砗蚝及粒帽蚶韧带无光学反射外,其他韧带均存在位于可见光范围内单反射峰,并随湿润程度增大而增加,反射强度也增大主波长还发生红移,从而导致韧带的水致变色现象,变色范围为28 nm^145 nm。韧带文石纤维独特的纳米形貌及其复杂的水致变色现象的发现对生物的矿物学及光子学研究具有重要的意义。 Field-emission scanning electron microscope and miniature fiber optic spectrometer were used to investigate comparatively and statistically the aragonitic fibers in ligaments from 21 bivalve species,aiming to understand their nanomorphologies and optical reflections. It was fund that,morphologically, the aragonitic fibers were of bead on string structures with aligned sub- grains of 30 nm-80 nm along the fiber axis.and nearly round or hexagonal across the fiber axis except those of Callista erycina, Hippopus hippopus, and Cucullaea granulose,which occurred as elongated hexagonal. In addition, the fiber diameters and interfiber spacing were species specific and varied from 65 nmto 222 nm and 88 nm to 214 nm,respectively. Moreover,the ligament generally displayed a single optical reflection whose intensity and dominant wavelength increased with increasing humidity, resulting in a hydrochromsim of the ligament in the range of 28 nm- 145 nm. However, the ligaments of Hippopus hippopus and Cucullaea granulose had no optical re flcction. The findings of unusual nanomorphology and complex hydrochromism in ligaments may have significant implications to biomineralization and photonics.
出处 《矿物岩石》 CAS CSCD 北大核心 2008年第3期9-13,共5页 Mineralogy and Petrology
基金 国家自然科学基金(40772033)
关键词 双壳纲韧带 文石纤维 纳米形貌 光学反射 bivalve ligament aragonitic fiber nanomorphology optical reflection
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参考文献11

  • 1Kahler G A.Fisher F M.Sass R. L. The chemical composition and mechanical properties of the hinge ligament in bivalve mollusks[J].Bio Bull.1976,151 : 161-181.
  • 2Bevelander G.Nakahara H. An electron microscope study of the formation of the tigament of Mytilus edulis and Pinctada radiala[J]. Calcif Tiss Res.1969.1:101-112.
  • 3Kahler G A,Sass R L.Fisher F M. The fine structure and crystallography of the ligament oi Spisula solidissima (Mollusca:Bivalvia:Mactridae) [J]. J Comp Physiol, 1976.109 : 209- 220.
  • 4Marsh M E,Sass R L,Aragonile twinning in the molluscan bivalve hinge ligament[J]. Science, 1980.208(13):1 262 -1 263.
  • 5Ono K.Kikuch Y, Higashi K, et al. Elastic anisotropy of bivalve hinge ligament[J]. J Biomech, 1990,23(1) : 307 -312.
  • 6张刚生,冯庆玲.青蛤贝壳韧带的结构色及微结构[J].矿物岩石,2006,26(3):1-5. 被引量:7
  • 7张刚生.大珠母贝韧带中的光子晶体型结构[J].科学通报,2007,52(2):240-242. 被引量:12
  • 8Waller T R. The evolution of ligament systems in lhe Bivalvia[A],Pp. 49- 71. Morton B. The Bivalvia[C]. Hong Kong: Hong Kong University Press, 1990.
  • 9Vigneron J P, l.ousse V. Complex optical structure in the ribbon like feathers o1 the African Open bill Stork[J]. Proc of SPIE. 2006,6 320: 632 014.
  • 10Penn R L,Banfield J F. Oriented attachment and growth.twinning,polytspism.and formation of metastable phases: Insights from nanocrystallinc TiO2[J].Amer .Miner, 1998. 83:1 077 -1 082.

二级参考文献30

  • 1邓开发,是度芳,蒋美萍,李承芳.光子晶体研究进展[J].量子电子学报,2004,21(5):555-564. 被引量:24
  • 2李勃,周济,李龙土,李琦,韩朔,郝智彪.鲍鱼壳中的一维光子带隙结构[J].科学通报,2005,50(13):1422-1424. 被引量:21
  • 3张刚生,李浩璇.生物成因与无机成因文石的FTIR光谱区别[J].矿物岩石,2006,26(1):1-4. 被引量:23
  • 4Addadi L,Joester D,Nudelman F, et al. Mollusk shell formation:a source of new concepts for understanding biomineralization processes[J].Chem Eur J,2006,12:980-987.
  • 5Kitagawa M,Li P. Physical properties of the inside ligament of the scallop shell[J]. J Mater Sci,2004,39(22) :6855-6856.
  • 6Ono K, Kikuch, Y, Higashi K, el al. Elastic anisotropy of bivalve hinge-ligament[J].J Biomech, 1000,23 (4) : 307-312.
  • 7Stenzel H B. Aragonite in the resilum of oysters[J].Science,1962,136:1121-1122.
  • 8Bevelander G ,Nakahara H. An electron microscope study of the formation of the ligament of Mytilus edulis and Pinctada radiata[J]. Calcif Tiss Res,1969,4:101-112.
  • 9Kahler G A,Fisher F M ,Sass R L. The chemical composition and mechanical properties of the hinge ligament in bivalve mollusks[J]. Bio Bull,1976,151:161-181.
  • 10Kahler G A,Sass R L,Fisher F M. The fine structure and crystallography of the ligament of Spisula solidissima (Mollusca:Bivalvia:Mactridae ) [J]. J Comp Physiol, 1976,109 : 209-220.

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