Yeungnam University South Korea
Irina V. Antonova
The institute of Semiconductor Physics, Russia
Lodz University of Technology Poland
XLIM Research Institute France
Daegu Gyeongbuk Institute of Science and Technology South Korea
AzTrong Inc Taiwan
Vijay K. Arora
Wilkes University USA
Y. W. Park
Seoul National University South Korea
Recommended Global Materials Science Conferences
About the Conference
The International Conference on Graphene and Semiconductors is to be held at Chicago, Illinois, USA during July 17-18, 2017 Organized by Conference series LLC.
It will bring together world-class professors, researchers, scientists and students across the world to discuss about the current developments that are taking place in the field of Graphene. Graphene and semiconductor is designed in such a way to provide diverse and current research that will provide an in-depth analysis in that field. The International Conference on Graphene and semiconductor is organized with a theme of “The Rising Era of Graphene” with an objective to encourage young minds to overcome the challenges in the research field of Graphene materials by providing an opportunity to meet the experts.
Graphene is an allotrope of carbon.It is made of a single layer of carbon atoms that are bonded together in a repeating pattern of hexagons.It is a is a thin layer of pure carbon it is a single, tightly packed layer of carbon atoms that are bonded together in a hexagonal honeycomb lattice. Semiconductors are crystalline or amorphous solids with distinct electrical characteristics.They are of high resistance and higher than typical resistance materials, but still of much lower resistance than insulators.
Meet Your Objective Business sector With individuals from and around the globe concentrated on finding out about Graphene and Semiconductor, this is the best chance to achieve the biggest collection of members from everywhere throughout the World. Conduct shows, disperse data, meet with current, make a sprinkle with another product offering, and get name acknowledgment at this occasion. Widely acclaimed speakers, the latest methods, strategies, and the most up to date overhauls in Graphene and Semiconductor, are signs of this meeting.
- Graphene Chemistry Eminent Scientists.
- Biodegradable Graphene Professors.
- Physics Junior/Senior Research Fellows.
- Chemical Engineering Research Professors.
- Directors of Graphene Companies.
- Graphene and Material Science Engineers.
- Graphene, Material Science Associations and Societies.
ConferenceSeries Ltd Conferences invites all the participants from all over the world to attend International Conference on Graphene and Semiconductors during July 17-18, 2017 at Chicago,Illinois,US which includes prompt keynote presentations, Oral talks, Workshops, Poster presentations and Exhibitions.
Theme of the Graphene and semiconductors conference is The Rising Era of Graphene with an objective to encourage young minds and their research abilities by providing an opportunity to meet the experts in the field of Engineering. Graphene and semiconductors are designed to explore various applications in different fields.
ConferenceSeries Ltd organizes a conference series of 3000+ Global Events with over 600+ Conferences, 1200+ Symposiums and 1200+ Workshops in USA, Europe & Asia with support from 1000 more scientific societies and publishes 700+ Open access journals which contains over 30000 eminent personalities, reputed scientists as editorial board members.
Track1: Graphene Synthesis
Synthesis of graphene refers to any process for fabricating graphene. Mechanical exfoliation is probably the technique to attain single and few layered graphene produces from natural graphite by repeated peeling/exfoliation. Chemical vapour deposition has techniques for making thin continuous films with thickness control in micro-electronics. Plasma enhanced chemical vapour deposition synthesizing large area graphene on copper foils using spin coated PMMA films. Graphene heterostructures are synthesized on cobalt substrates by using the molecular beam epitaxial growth.
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Graphene an important Nano sized material, become an exciting two-dimensional material with distinct attributes in the fields of physics, chemistry, biology and medicine, as well as their related interdisciplinarities. Chemical and biological sensor based on graphene field effect transistor, a single layered of graphene prepared by mechanical cleavage of natural graphite. A systematic nomenclature for this set of graphene-Family Nanomaterial’s, specific materials relevant for bimolecular and cellular interaction. The bio-active molecule/graphene conjugates and the opportunities for the design of multi-functional tools for synthetic biology.
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Chemical functionalization of graphene enables the material to be processed by solvent assisted techniques, such as layer by layer assembly, spin coating and filtration. Hexagonal boron nitride is electrical insulating, combined with graphene and other 2D materials to make heterostructure devices. The two dimensional graphene sheet structures for field emission of electrons due to the carrier mobility and electron mass. The filed emitter by using multi layered graphene nanostructure, the graphitic structure of pristine graphene and carbon nanotube is the driving force of their interaction .The combination of graphene with carbon nanotubes to produced hybrids increased electrical conductivity, mechanical properties and high surface area.
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Epitaxial growth of graphene obtained on a 6H oriented SiC by vacuum heating at and limited the size of Sic substrates. Micro chemical exfoliation of highly oriented pyrolytic graphite which cannot be scaled to wafer-size dimensions. X-ray diffraction of high temperature annealed Ni film. Diffraction spectra were collected on the annealed Ni substrates over which graphene films are typically synthesized. Graphene that is simply composed of the dissolution of glucose and in water, vaporization of water and calcination.
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Graphene-enchaned lithium ion batteries could be used in higher energy usage applications now in smartphones, laptops and tablet PCs. Graphene has a great potential to use for low cost, flexible and highly efficient photovolatics devices due to its excellent electron-transport properties and carrier mobility. Single or few layered graphene with less agglomeration, exhibit a higher effective surface area and better supercapictor. In hydrogen storage, hydrogen plays an important role in energy carriers. As a fuel of choice it is light weight, contains high energy density and emits no-harmful chemical by-products, hydrogen considered as a green energy.
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Graphene oxide has excellent characteristics as a nanomaterial for drug delivery. It expands for anticancer drugs to another non-cancer treatment diseases treatment. Using the fluorescence super-quenching ability of graphene to develop novel fluorescence resonance energy transfer biosensors. Cancer therapy made on exploration of graphene in drug delivery by in vitro test. For clinical cancer and other disease treatment, vivo behaviour of graphene loaded with drugs.
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Track 7: Semiconductors
Wide band gap to higher-energy electronic band gaps, difference in energy levels that creates the semiconductor action. Organic semiconductors are pi-bonded molecules made up of carbon and hydrogen atoms. They exist in amorphous thin films. Quantum dots are Nano scale particle of semiconducting material that can be embedded in cells. Larger quantum dots emits longer wavelength in emission colour and short quantum dots emits shorter wavelength in colour.
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By alloying multiple compounds, some semiconductor materials are tunable that results in ternary, quaternary compositions. Applications of semiconductors materials are optoelectronic, solar cells, Nano photonics, and quantum optics. Fabrication of cellulose Nano-structures via Nano Synthesis is a direct conversion of TMSC layers into cellulose via a Nano-sized focused electron beam as used in scanning electron microscopes.
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Organic photovoltaic cells are solar cells that utilize for organic polymers and small molecules as the active layer for absorption of light and charge transport. Organic semiconductors of their applications are optoelectronic devices, light emitting diodes and photovoltaics. A perovskite solar cell is a type of solar cell which includes a pervoskite structure compound, hybrid organic-inorganic lead material as a light-harvesting layer. Applications of pervoskite are capacitor, sensor, acoustic transducers, optical memory display etc.,
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Track 10: Carbon nanotubes and graphene
Graphenated CarbonNanotubes are new hybrid that combines graphitic foliates grown with sidewalls of bamboo style CNTs. It has high surface are with 3D framework of CNTs coupled with high edge density of graphene. Chemical modification of carbon nanotubes are covalent and non-covalent modifications due to their hydrophobic nature and improve adhesion to a bulk polymer through chemical attachment. Applications of the carbon nanotubes are composite fibre, cranks, baseball bats, Microscope probes, tissue engineering, energy storage, super capacitor etc. Nanotubes are categorized as single-walled and multi-walled nanotubes with related structures.
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Graphene and Semiconductors
(Theme: The Rising Era of Graphene)
Graphene, the two-dimensional crystal of carbon, has many extraordinary properties and characteristics which are either unique or surpass those of other materials. The fundamental properties of graphene are making it an attractive material for a wide variety of applications. And a potentially disruptive technology, is all the properties that are combined into one material like strong, flexible, transparent, and an excellent conductor of both heat and electricity - make it ideal for a wide range of real-world applications in areas such as electronics, biomedicine, energy and composites, The uptake of graphene will be driven by confidence in its performance and progress in its production with properties appropriate for specific application.
A semiconductor is a substance, usually a solid chemical element or compound, that can conduct electricity under some conditions but not others, making it a good medium for the control of electrical current. Its conductance varies depending on the current or voltage. The specific properties of a semiconductor depend on the impurities, or dopants, added to it Elemental semiconductors include antimony, arsenic, boron, carbon, germanium, selenium, silicon, sulfur, and tellurium. Silicon is the best-known of these, forming the basis of most integrated circuits (ICs). A semiconductor device can perform the function of a vacuum tube having hundreds of times its volume.
Operating Committee invites all the participants across the globe to attend the International Conference and Exhibition on Graphene and Semiconductors on July 17-18, 2017, Chicago, Illinois, USA. Graphene-2017 covers a broad range of topics to discuss on this international platform by conducting keynote lectures, plenary speeches, workshops and poster presentations. Graphene -2017 is designed to explore the implications of Graphene and Semiconductors.
Importance & Scope:
Graphene is the thinnest strongest material in nature. This element is important because it may function as conductors, semiconductors, as well as insulators .Fullerene, graphene, and graphite are a few of the most important allotropes of carbon that exist in nano scale dimensions, and all three have unique physical, material, and chemical properties. Electricity flows very quickly through the simple honeycomb sheet. Most conductors we encounter are metals, yet graphene is based on carbon, a nonmetal.
Semiconductor devices can be mainly used to display a range of useful properties such as passing current more easily in one direction than the other, showing variable resistance, and sensitivity to light or heat. The electrons in semiconductors can have energies only within certain bands between the energy of the ground state, corresponding to electrons tightly bound to the atomic nuclei of the material, and the free electron energy, which is the energy required for an electron to escape entirely from the material. Graphene-2017 covers the area of Graphene Synthesis,Chemistry and biology studies of graphene,Graphene modification and functionalization,large scale Graphene production and characterization,Applications of Graphene in energy,Applications of Graphene in Biomedical,Semiconductors,SemiconductorMaterialsandNanostructures,Organic/InorganicHybridSemiconductors and Perovskites, Carbon Nanotubes and graphene, Quantum optics and Nano photonics in Semiconductor , Enterperneurs investment meet.
Chicago is among the largest cities in the U.S. Famed for its bold architecture, the population of the city is 2,695,598 and rank 3rd largest city in US. Chicago had the third largest gross metropolitan product in the United States at US$571billion. With over 2.7 million residents, it is the most populous city in the state of Illinois and the Midwest.
The city has many nicknames, which reflect the impressions and opinions about historical and contemporary Chicago. The best-known include the “Windy City” and “Second City”. Chicago has professional sports teams in each of the major professional leagues. The city’s waterfront location and nightlife has attracted residents and tourists alike. Over a third of the city population is concentrated in the lakefront neighborhoods of Rogers Park in the north to South Shore in the south.The nature lovers are not to be disappointed for this place has something in store for everybody. Animal lovers will love the Lincoln Park Zoo, the Brookfield Zoo, the Garfield Park Conservatory and the Lincoln Park Conservatory should satiate the eyes of those looking for some quiet enjoyment.
Culturally very sound, this city offers you the best of African American, Asian and Latino cultures. Since it was the home of the Great Migration of the early 20th centuary, you will get to experience the cultural revival of the Harlem Renaissance. This city has a century old history of holding the most jazz musical shows, which you can still get to hear the city’s many night clubs. Not just music, this place also has a lot to say about the culture of African Americans. The DuSable Museum has more than 15000 artifacts and the Bronzeville Visitor Information Center and the Gallery Guichard gives the pleasure of viewing many art galleries of both nationally and internationally renowned artists.
As a multicultural city that thrives on the harmony and diversity of its neighborhoods, Chicago today embodies the values of America’s heartland-integrity, hard work and community and reflects the ideals in the social fabric of its 77 distinct neighborhoods.
Why to attend???
International Conference on Graphene and Semiconductors which is going to be the biggest conference dedicated to Graphene providing a premier technical forum for reporting and learning about the latest research and development along with discussing new applications and technologies. It allows delegates to have issues addressed on Graphene by recognized global experts who are up to date with the latest developments in the field of Graphene and Semiconductors and provide information on new techniques and technologies. This International conference on Graphene and Semiconductors will feature world renowned keynote speakers, plenary speeches, young research forum, poster presentations, technical workshops and career guidance sessions. Meet Your Objective Business sector With individuals from and around the globe concentrated on finding out about Graphene and Semiconductor, this is the best chance to achieve the biggest collection of members from everywhere throughout the World. Conduct shows, disperse data, meet with current, make a sprinkle with another product offering, and get name acknowledgment at this occasion. Widely acclaimed speakers, the latest methods, strategies, and the most up to date overhauls in Graphene and Semiconductor, are signs of this meeting.
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