نتایج جستجو برای: walled boron nitride nanotubes

تعداد نتایج: 63586  

Journal: :Nano letters 2005
Jiesheng Wang Vijaya K Kayastha Yoke Khin Yap Zhiyong Fan Jia G Lu Zhengwei Pan Ilia N Ivanov Alex A Puretzky David B Geohegan

High growth temperatures (>1100 degrees C), low production yield, and impurities have prevented research progress and applications of boron nitride nanotubes (BNNTs) in the past 10 years. Here, we show that BNNTs can be grown on substrates at 600 degrees C. These BNNTs are constructed of high-order tubular structures and can be used without purification. Tunneling spectroscopy indicates that th...

2007
Jason P. Moscatello Jiesheng Wang Benjamin Ulmen Vijaya K. Kayastha Ming Xie Samuel L. Mensah Shun Wu Archana Pandey Chee Huei Lee Abhishek Prasad Yoke Khin Yap

Nanotubes have significant portions of their atoms located at the surfaces and represent the future of biological devices. With such small dimensions, sensitivities and applications previously impossible are being made real. Not all nanomaterials are currently at the same level of proficiency, however. Carbon nanotubes are a mature, easily grown and controlled nanostructure, but boron nitride a...

Journal: :Langmuir : the ACS journal of surfaces and colloids 2009
Cheehuei Lee Jaroslaw Drelich Yokekhin Yap

Partially vertical aligned boron nitride nanotubes (BNNTs) on Si substrates are found to be superhydrophobic in contrast to boron nitride (BN) thin films. While the hexagonal-phase BN films are partially wetted by water with advancing contact angle of about 50 degrees , partially vertically aligned BNNTs can achieve superhydrophobic state with advancing water contact angle exceeding 150 degrees...

ژورنال: :international journal of new chemistry 0

electrical sensitivity of a boron nitride nanotube (bnnt) was examined toward aniline (c6h5nh2) molecule by using density functional theory (dft) calculations at the b3lyp/6-31g (d) level, and it was found that the adsorption energy (ead) of aniline on the pristine nanotubes is a bout -19.03kcal/mol. but when nanotube has been doped with si and al atomes, the adsorption energy of aniline molecu...

Journal: :Physical review letters 2010
Noa Marom Jonathan Bernstein Jonathan Garel Alexandre Tkatchenko Ernesto Joselevich Leeor Kronik Oded Hod

The interlayer sliding energy landscape of hexagonal boron nitride (h-BN) is investigated via a van der Waals corrected density functional theory approach. It is found that the main role of the van der Waals forces is to anchor the layers at a fixed distance, whereas the electrostatic forces dictate the optimal stacking mode and the interlayer sliding energy. A nearly free-sliding path is ident...

A Ghorbanpour Arani, M Mohammadimehr R Kolahchi Z Khoddami Maraghi

In this article, electro-thermo nonlocal nonlinear vibration and instability of viscous-fluid-conveying double–walled boron nitride nanotubes (DWBNNTs) embedded on Pasternak foundation are investigated. The DWBNNT is simulated as a Timoshenko beam (TB) which includes rotary inertia and transverse shear deformation in the formulation. Considering electro-mechanical coupling, the nonlinear govern...

Journal: :Nanotechnology 2008
Chee Huei Lee Jiesheng Wang Vijaya K Kayatsha Jian Y Huang Yoke Khin Yap

Effective growth of multiwalled boron nitride nanotubes (BNNTs) has been obtained by thermal chemical vapor deposition (CVD). This is achieved by a growth vapor trapping approach as guided by the theory of nucleation. Our results enable the growth of BNNTs in a conventional horizontal tube furnace within an hour at 1200 °C. We found that these BNNTs have an absorption band edge of 5.9 eV, appro...

2013
Claudio Attaccalite Ludger Wirtz Andrea Marini Angel Rubio

Boron nitride is a promising material for nanotechnology applications due to its two-dimensional graphene-like, insulating, and highly-resistant structure. Recently it has received a lot of attention as a substrate to grow and isolate graphene as well as for its intrinsic UV lasing response. Similar to carbon, one-dimensional boron nitride nanotubes (BNNTs) have been theoretically predicted and...

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