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   µª»¯ÅðÄÉÃ׹ܣ¨BNNT£©ºÍ̼ÄÉÃ׹ܣ¨CNT£©½á¹¹ºÜÏàËÆ£¬ÆäB¡¢NÔ­×Ó¾ùÒÔsp2ÔÓ»¯Ì¬ÐγÉÀàËÆÊ¯Ä«µÄÁù±ßÐÎÆ½ÃæÍø×´½á¹¹£¬Ã¿¸öB»òNÔ­×ÓÌṩһ¸öp¹ìµÀÐγɹ²éî¦Ð¼ü£¬Ã¿¸öBNµ¥Ôª¹±Ï×Á½¸öÔÚÆ½Ãæ½á¹¹ÔËתµÄ¦Ðµç×Ó£¬¹ÊBNNTÒ²±íÏÖ³ö³¬Ç¿Á¦Ñ§ÐÔÄÜ£¬¸ßµÄµ¼µç¡¢µ¼ÈȵÈÌØÕ÷£¬¸ù¾ÝBNNT²ãÊýµÄ²»Í¬£¬BNNTÒ²¿É·ÖΪµ¥±Ú¹ÜºÍ¶à±Ú¹Ü½á¹¹¡£ÓëCNTÏà±È£¬BNNTÔÚ¸ÄÉÆ¸´ºÏ²ÄÁϵĸßÎÂÁ¦Ñ§ÐÔÄÜ¡¢ÈÈÎȶ¨ÐÔ¡¢¿¹Ñõ»¯ÐԵȷ½Ãæ¾ßÓв»¿É±ÈÄâµÄÓÅÊÆ£¬Ê¹ÆäÖÆ±¸µÄ³¬Ç¿¸´ºÏ²ÄÁϺ;ßÓÐÓÅÒìµ¼µçÐÔÄܵÄÌմɸ´ºÏ²ÄÁϵȿÉÒÔÔÚ¸ßμ°ÆäËü¶ñÁӵĻ·¾³Ï¹¤×÷£¬¿É¹ã·ºÓ¦ÓÃÔÚÒ±½ð¡¢»¯¹¤¡¢º½Ìì¡¢»úеµÈÁìÓò£¬±ÈCNTÓиü¹ã·ºµÄÓ¦ÓÃǰ¾°¡£Ä¿Ç°,Óйصª»¯Åð(BN) ÄÉÃ׹ܵĵç×ӽṹµÈ·½ÃæµÄÑо¿ÒѾ­Õ¹¿ª[7-11]¡£µ«ÊÇÓйصª»¯Åð(BN) ÄÉÃ׹ܵÄÁ¦Ñ§ÌØÐԵı¨µÀÈ´ºÜÉÙ¡£Won Ha Moon µÈ[12]²ÉÓ÷Ö×Ó¶¯Á¦Ñ§·½·¨¶Ô(5 ,5) Ð͵¥±ÚBN ÄÉÃ׹ܵÄѹËõÌØÐÔ½øÐйý¼òµ¥Ñо¿,Éòº£¾ü[13 ]¶Ôµ¥±ÚBN ÄÉÃ×¹ÜÓëÄÉÃ×¶¹¼ÔµÄÀ­ÉìºÍѹËõÌØÐÔ½øÐйý±È½Ï¡£

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4Â¥2009-06-30 12:08:42
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lixiaod001

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yjh6887(½ð±Ò+5,VIP+0):ÈÔÈ»¸ÐлÄ㣡 7-1 14:48
qingfeng877680(½ð±Ò+0,VIP+0):ʹÓÃÈí¼þ·­ÒëÇë×¢Ã÷£¬Ð»Ð»ºÏ×÷£¡ 7-9 20:33
Boron nitride nanotubes (BNNT) and carbon nanotubes (CNT) structure is very similar, the B, N atoms are sp2 hybrid-state formation of the hexagonal graphite-like planar network structure, each B or N atoms to provide a can be divided into single-walled tubes and multi-walled tube structure. CNT compared with, BNNT composite materials to improve the mechanical properties of high temperature, thermal stability, oxidation resistance, etc. has unparalleled advantages, its super-prepared composite materials and has excellent conductive properties of ceramic composite materials can high temperature and other harsh environments, can be widely used in metallurgical, chemical, aerospace, machinery and other fields, there are more extensive than in CNT applications. At present, the boron nitride (BN) nanotube electronic structure studies have been carried out [7-11]. However, boron nitride (BN) of the mechanical properties of nanotubes are very few reports. Won Ha Moon, etc. [12] using molecular dynamics method (5, 5)-type single-walled BN nanotubes have the compression characteristics of a simple study, Shen Navy [13] on single-walled BN nanotubes and nano-pod tensile and compression comparative characteristics.
2Â¥2009-06-30 08:12:20
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monitor2885

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5Â¥2009-06-30 13:47:22
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huang_yany

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yjh6887(½ð±Ò+15,VIP+0):ллÏàÖú 7-1 14:47
The structure of Boron nitride nanotubes (BNNT) is similar as that of carbon nanotubes (CNT).Their B and N atoms are both sp2 hybrid-state to form  the hexagonal graphite-like planar network structure . Each B or N atoms can provide a p-track to form ¦Ð-bond, so every BN unit contribute two ¦Ð electronics that are functional on the plain.As a result,BNNT also reveals super mechanic quality and exellent cnductive property of electricity and heat.BNNT can be divided into single-walled tubes and multi-walled tube structure.Comparing to CNT,BNNT owns great advantage in improving the mechanical properties under high temperature, thermal stability, oxidation resistance, etc. Composite materials prepared with BNNT can work well under high tempertature and other bad enviroment.And they can be extensively used in metallurgical, chemical, aerospace, machinery and other fields,in which CNT is not able to be used.Now,researches on the structure of BN nano-tube's electronic has started.However,reports of its mechanic property are scare. Won Ha Moon.etc adopt molecular-dynamic method to make simple study on the compression characteristic of (5,5)-sigle-walled BN nano-tube.Shen Haijun has compared the tensile and compression characteristics of single-walled BN nano-tube and nano-pod.
6Â¥2009-06-30 13:58:54
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