نتایج جستجو برای: t shaped graphene nanodevice

تعداد نتایج: 819493  

Journal: :international journal of bio-inorganic hybrid nanomaterials 2015
m. bashirpour

graphene, after its first production in 2004 have received lots of attentions from researchers because of its unique properties. high mobility, high sensitivity, high selectivity and high surface area make graphene excellent choice for bio application. one of promising graphene base device that has amazingly high sensitivity is graphene field-effect transistor (gfet). this review selectively su...

Journal: :Journal of Physics: Condensed Matter 2004

2014
C. M. Wu W. J. Chen Yue Zheng D. C. Ma B. Wang J. Y. Liu C. H. Woo

Ferroelectric vortex domain structure which exists in low-dimensional ferroelectrics is being intensively researched for future applications in functional nanodevices. Here we demonstrate that adjusting surface charge screening in combination with temperature can provide an efficient way to gain control of vortex domain structure in ferroelectric nanodot. Systematical simulating experiments hav...

2007
Youdong Mao Dongsheng Liu Shutao Wang Songnian Luo Wenxing Wang Yanlian Yang Qi Ouyang Lei Jiang

Macroscopically realizable applications of DNA-based molecular devices require individual molecules to cooperate with each other. However, molecular crowding usually introduces disorder to the system, thus jeopardizing the molecular cooperation and slowing down their functional performance dramatically. A challenge remaining in this field is to obtain both smarter response and better cooperatio...

2011
F. Ding J. X. Ji Y. F. Mei K. Dörr A. Rastelli O. G. Schmidt M. H. Rümmeli A. Bachmatiuk A. Scott G. Cuniberti B. Büchner

Interest in graphene since its isolation in 2004 has rapidly escalated. It has been described as nature's thinnest elastic material and its exceptional mechanical and electronic properties make it an extremely exciting material. Within the realm of electronics , it is its one atoms thickness, planar geometry, high current-carrying capacity and thermal conductivity and potential to open a gap wh...

A. Amrollahi A. Behzadmehr, A. M. Rashidi M. Izadi M. M. Shahmardan

This paper was aimed to address the modeling of effective thermal conductivity and viscosity of carbon structured nanofluids. Response surface methodology, D_optimal design (DOD) was employed to assess the main and interactive effects of temperature (T) and weight percentage (wt %) to model effective thermal conductivity and viscosity of multi wall and single wall carbon nanotube, CVD and RGO G...

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