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Artificial DNA Nanostructures for Photonics and Biomedical Application

Artificial DNA Nanostructures for Photonics and Biomedical ApplicationBy Rashid Amin
About Artificial DNA Nanostructures for Photonics and Biomedical Application

DNA ¿the genetic code of life¿ is considered one of the most incredible and intelligent self-assembling nanomaterials. The unique feature of DNA self-assembly is surrounded by multiple disciplines such as physics, chemistry, biology, material science, medicine, and even in computer sciences. DNA self-assembly through specific base-pairing provides a programmable fabrication method of DNA nanostructures with various geometries. DNA nanotechnology exploits the predictable self-assembly of DNA oligonucleotides for designing and constructing innovative and distinctive nanostructures. Highly ordered DNA motifs and structures can provide us ultrafine frameworks for the next generation nanofabrication. All these applications are predicated on the complementarity of two DNA strands, embedded in the hydrogen bonded base pairing linking adenine (A) and thymine (T), guanine (G) and cytosine (C). DNA provides a smart route for the creation of nanoarchitectures with programmable and predictable patterns. Because of its unique and novel characteristics it can intermingle multidisciplinary research areas like nanoelectronics, Opoelectrincs, biomedicine, and even in modern computer sciences.

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  • Language:
  • English
  • ISBN:
  • 9786139898770
  • Binding:
  • Paperback
  • Pages:
  • 204
  • Published:
  • February 23, 2021
  • Dimensions:
  • 150x13x220 mm.
  • Weight:
  • 322 g.
Delivery: 1-2 weeks
Expected delivery: December 12, 2024
Extended return policy to January 30, 2025

Description of Artificial DNA Nanostructures for Photonics and Biomedical Application

DNA ¿the genetic code of life¿ is considered one of the most incredible and intelligent self-assembling nanomaterials. The unique feature of DNA self-assembly is surrounded by multiple disciplines such as physics, chemistry, biology, material science, medicine, and even in computer sciences. DNA self-assembly through specific base-pairing provides a programmable fabrication method of DNA nanostructures with various geometries. DNA nanotechnology exploits the predictable self-assembly of DNA oligonucleotides for designing and constructing innovative and distinctive nanostructures. Highly ordered DNA motifs and structures can provide us ultrafine frameworks for the next generation nanofabrication. All these applications are predicated on the complementarity of two DNA strands, embedded in the hydrogen bonded base pairing linking adenine (A) and thymine (T), guanine (G) and cytosine (C). DNA provides a smart route for the creation of nanoarchitectures with programmable and predictable patterns. Because of its unique and novel characteristics it can intermingle multidisciplinary research areas like nanoelectronics, Opoelectrincs, biomedicine, and even in modern computer sciences.

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