Advances in Analytical Modelling for Nano-Bio-Technology
Keywords:
Nano-technology, Nano-bio-materials, Nano-bio- devices, Diffusion, Sensitivity, Analytical Modelling, Mathemati- cal Modelling. In last years the increased ability to manipulate matter, combined with advances and discoveries in the synthesis and assembly of structures at nanoscale, brought to interesting advances in scientific and technological areas. For explaining the nanoscale phenomena, a deep understanding of electronic, magnetic and photonic interactions at this size scale is desiderable, through experiments, theory and mathematical modelling [1, 2]. Nanomaterial-based devices are a powerful class of ultrasensitive devices for direct utilization at biological, chemical, medical, environmental level, in many areas of healthcare and life sciences. Considered the strong current demand of increasingly compact and powerful systems, there is a great interest in the development of nanoscale devices with new functions and enhanced performance. Central for this realization is the rational control of key nanomaterial parameters, determining electronic and optoelectronic properties [3-7]. Recently it has appeared a new generalization of the Drude- Lorentz model, based on the complete Fourier transform of the frequency-dependent complex conductivity )(ωσ of the system, which presents analytical expressions for the most important quantities related to transport phenomena, i.e. theAbstract
Nano-bio-technology is one of the most important mainstreams of current world research; improvements in creation and increase of nano-devices performance are a primary objective of pure research and applied technology. The devices sensitivity is an essential characteristic, for determining a great increase of their quality; various ideas and techniques are considered in this direction. A new appeared theoretical analytical model for the study of transport dynamics is able to accommodate previously not completely understood behaviours and indicates precise ways for calibrate and improve the device performance.Downloads
Published
2015-06-22
Issue
Section
Short Communication