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多壁氮化硼纳米管中的双螺旋结构。

Double-helix structure in multiwall boron nitride nanotubes.

作者信息

Celik-Aktas Ayten, Zuo Jian Min, Stubbins James F, Tang Chengchun, Bando Yoshio

机构信息

Department of Nuclear, Plasma, and Radiological Engineering, University of Illinois at Urbana-Champaign, IL 61801, USA.

出版信息

Acta Crystallogr A. 2005 Nov;61(Pt 6):533-41. doi: 10.1107/S0108767305026723. Epub 2005 Oct 22.

Abstract

A new nanotube structural form is reported that resembles a double helix in multiwall boron nitride nanotubes (MW-BNNT) grown by a carbon-free chemical-vapor-deposition process as documented by evidence obtained by transmission electron diffraction and microscopy. The double-helix structure is found in MW-BNNTs exhibiting the same chirality in its different walls. The MW-BNNTs deviate from the structure of ideal nested coaxial cylindrical tubes. Most significantly, bright- and dark-field electron imaging reveals regular zigzag dark and bright spots on the side walls of the nanotubes. The repeating distance between the bright, or dark, spots is related to the chiral angle of the nanotube. Electron diffraction patterns recorded from individual nanotubes show additional diffraction spots belonging to the 201 zone axes, which are not allowed in a perfectly cylindrical nanotube. These additional diffraction spots become asymmetrical as smaller sections of the nanotube are probed. A series of diffraction patterns recorded along the tube axis showed that the imperfections giving rise to these spots move in a regular fashion around the circumference of the tube. It is shown that all experimental evidence supports the structure model of two helices; one is polygonal in cross section and highly crystalline and the other is circular and less ordered. It is further suggested that the double-helix structure is a result of stronger wall-wall interactions associated with the ionic bonding in boron nitride.

摘要

据报道,通过无碳化学气相沉积法生长的多壁氮化硼纳米管(MW-BNNT)中出现了一种新的纳米管结构形式,类似于双螺旋结构,这一结构已通过透射电子衍射和显微镜获得的证据得以证实。在不同管壁中呈现相同手性的MW-BNNT中发现了这种双螺旋结构。MW-BNNT偏离了理想嵌套同轴圆柱管的结构。最显著的是,明场和暗场电子成像显示纳米管侧壁上有规则的锯齿状暗斑和亮斑。亮斑或暗斑之间的重复距离与纳米管的手性角有关。从单个纳米管记录的电子衍射图案显示出属于201区轴的额外衍射斑点,而在完美的圆柱形纳米管中是不允许出现这些斑点的。当探测纳米管的较小部分时,这些额外的衍射斑点会变得不对称。沿管轴记录的一系列衍射图案表明,产生这些斑点的缺陷围绕管的圆周以规则的方式移动。结果表明,所有实验证据都支持双螺旋结构模型;一种在横截面中呈多边形且高度结晶,另一种呈圆形且有序性较低。进一步表明,双螺旋结构是与氮化硼中的离子键相关的更强的壁-壁相互作用的结果。

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