Endo Morinobu, Muramatsu Hiroyuki, Hayashi Takuya, Kim Yoong-Ahm, Van Lier Gregory, Charlier Jean-Christophe, Terrones Humberto, Terrones Mauricio, Dresselhaus Mildred S
Faculty of Engineering, Shinshu University, 4-17-1 Wakasato, Nagano-shi 380-8553, Japan.
Nano Lett. 2005 Jun;5(6):1099-105. doi: 10.1021/nl050627l.
Here we demonstrate that the incorporation of boron (B) atoms between double-walled carbon nanotubes (DWNTs) during thermal annealing (1400-1600 degrees C) results in covalent nanotube "Y" junctions, DWNT coalescence, and the formation of flattened multiwalled carbon nanotubes (MWNTs). These processes occur via the merging of adjacent tubes, which is triggered by B interstitial atoms. We observe that B atom interstitials between DWNTs are responsible for the rapid establishment of covalent connections between neighboring tubes (polymerization), thereby resulting in the fast annealing of the carbon cylinders with B atoms embedded in the newly created carbon nanotube network. Once B is in the lattice, tube faceting (polygonization) starts to occur, and the electronic properties are expected to change dramatically. Therefore, B atoms indeed act as atomic nanotube fusers (or welders), and this process could now be used in assembling novel electronic nanotube devices, nanotube networks, carbon nanofoams and heterojunctions exhibiting p-type electronic properties.
在此我们证明,在热退火(1400 - 1600摄氏度)过程中,将硼(B)原子掺入双壁碳纳米管(DWNTs)之间会导致共价纳米管“Y”型结、DWNT合并以及扁平多壁碳纳米管(MWNTs)的形成。这些过程通过相邻碳管的合并发生,这是由B间隙原子引发的。我们观察到DWNTs之间的B原子间隙负责相邻碳管之间共价连接的快速建立(聚合),从而导致嵌入新创建碳纳米管网络中的含B原子的碳圆柱体快速退火。一旦B进入晶格,碳管刻面(多边形化)就开始出现,并且电子性质预计会发生显著变化。因此,B原子确实充当原子级纳米管融合器(或焊接器),并且这一过程现在可用于组装具有p型电子性质的新型电子纳米管器件、纳米管网络、碳纳米泡沫和异质结。