About

Jul 21-22, 2020    London, UK

Webinar on Nano-Engineering and Its Applications

Webinar on Nano-Engineering and Its Applications will be the world’s foremost conference for all eminent professionals dealing with nanotechnology and research science to come together and enrich this event with their research findings and experiences. Nanotechnology Webinar offers over 25 scientific sessions from different research areas in the field of nanotechnology and advanced nanotechnology research science in the form of keynote presentations, plenary sessions, oral sessions, panel discussions, posters presentations, workshops, symposia, and young researchers’ forum.

Nanotechnology Webinar is going to be held in London, UK during July 22, 2020. Nanotech 2020 will address the succeeding research and development in the field of nanotechnology, nanobiotechnology, nanomaterials, nanoEngineering, Nanofabrication, DNA nanotechnology, nanostructures and this will provide a major opportunity for collaboration and interaction among all research scholars and industry personnel.

Nanotech 2020 Webinar will become the leading platform in bringing together all experts and beginners for a friendly and effective research-orient­ed discussion. The goal of Longdom conferences is to bring together scientists at every level from diverse disciplines to understand and discuss throughout the programmed sessions and comfortable gatherings. All these opportunities will support the professional growth of younger scientists that will promote future collaborations and enhance participation and contribution to their exciting research work.

Sessions/ Tracks

Nanotech 2020 is comprised of various tracks and sessions designed to offer comprehensive sessions that address current issues in the field of Nanotechnology.

Track 1Nanoengineering

Nano-engineering is the practice of engineering on the nano-scale. It derives its name from the nano-meter, a unit of measurement equaling one billionth of a meter. nanoengineering is largely a synonym for nanotechnology but emphasizes the engineering rather than the pure science aspects of the field.

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Track 2: Nanotechnology

Nanotechnology incorporates science, designing and change and includes imaging, measuring, exhibit, and controlling matter at the nanoscale. The promotion of absorbing nanoscale structures can perhaps upset industry, including hardware, pharmaceutical, and customer items. Using nanotechnology, the substance can successfully be made stronger, lighter, more long-lasting, more reactive, more sieve-like, or better electrical conductors, among many other traits. many everyday commercial products are currently on the market and in daily use that relies on nanoscale material processes.

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Track 3: Nano-biotechnology

Nano-biotechnology serves as blanket terms for various related technologies, nanobiology involve applying nano-tools to relevant medical/biological problems and refining these applications.

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Track 4: Nanomaterials

nanomaterial is defined as the "material with any external dimension in the nanoscale or having an internal structure or surface structure in the nanoscale", with nanoscale defined as the "length range approximately from 1 nm to 100 nm". This includes both nano-objects, which are discrete pieces of material, and nanostructured materials, which have internal or surface structure on the nanoscale; a nanomaterial may be a member of both these categories.

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Track 5:  Nanofabrication

Nanofabrication is the process to create little structures of micrometer scales and small-scale. Truly, the most punctual microfabrication policy was utilized for incorporated circuit making, otherwise called "semiconductor assembling" or "semiconductor device manufacturer". In the most current two decades microelectromechanical frameworks (MEMS), Microsystems (European use), micromachines (Japanese phrasing) and their subfields, microfluidics/lab-on-a-chip, optical MEMS (likewise called MOEMS), RF MEMS, Power MEMS, Bio-MEMS and their expansion into Nanoscale (for instance NEMS, for Nanoelectromechanical frameworks) have re-utilized, regulate or amplified microfabrication blueprint.

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Track 6: Nanocrystal

A nanocrystal is a material particle having at least one dimension smaller than 100 nanometres, based on quantum dots (a nanoparticle) and composed of atoms in either a single- or poly-crystalline arrangement. The size of nanocrystals distinguishes them from larger crystals.

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Track 7: DNA Nanotechnology

The capability of DNA to self–assemble into a diversity of nanostructures and nanomachines in the spotlight in a growing number of papers in nature nanotechnology. The appeal of DNA to nanoscientists is threefold: first, it is a natural nanoscale material; second, a large number of techniques for studying DNA are already available; and third, its ability to carry information can be used in the self–assembly process. DNA is also progressively being used to organize alternative nanomaterial’s, and the related field of RNA nanotechnology is beginning to appear.

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Nanoparticles are particles between 1 and 100 nanometres in size with a surrounding interfacial layer. The interfacial layer is an integral part of nanoscale matter, fundamentally affecting all of its properties. The interfacial layer typically consists of ions, inorganic and organic molecules.

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Track 9: Nanorobotics

A Nanorobot is a small-scale apparatus designed to accomplish a definite mission repetitively and with exactness at nanoscale dimensions. more particularly, nanorobotics (instead of micro-robotics) refers back to the nanotechnology engineering subject of designing and building nanorobots, nanomachines are largely in the research and improvement phase.

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Track 10: Nanomedicine

Nanomedicine is a part of medication that applies the information and instruments of nanotechnology to the anticipation and treatment of infection. nanomedicine includes the utilization of nanoscale materials, for example, biocompatible nanoparticles and nanorobots, for analysis, conveyance, detecting or incitation purposes in a living life form.

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