The use of electromagnetic (EM) waves to transmit information has allowed our society to collaborate and share information on a scale that was unimaginable just a few decades ago. But as with any technology, there are areas where EM-based communications do not function well. For example, underwater and underground communications where EM waves experience high attenuation. This limitation has generated interest in an alternative mode of information transmission, molecular communications. In this thesis, after giving a survey of micro- and macro-scale molecular communications, the two most important aspects of molecular communications are identified: macroscale molecular communications and the experimental analysis of molecular communication...
Molecular communications (MC) has been studied as a bio-inspired information carrier for micro-scale...
yesThis article examines recent research in molecular communications from a telecommunications syst...
This demonstration will present the world's first macroscale molecular communication link to reliabl...
With much advancement in the field of nanotechnology, bioengineering and synthetic biology over the ...
Molecular communications (MC) offers an alternative to established methods (i.e., electromagnetic wa...
Always-on, always-available digital communication has changed the world – allowing us to collaborate...
Molecular communication (MC) involves the transmission of information using particles (i.e., molecul...
Abstract—In molecular communication, information is con-veyed through chemical messages. With much a...
Multi-scale molecular communication (MC) employs the characteristics of information molecules for in...
Molecular communications (MC) offers an alternative to established methods (i.e., electromagnetic wa...
Abstract—This demonstration will present the world’s first macroscale molecular communication link t...
Molecular communications (MC) is the use of molecules as carriers of information between devices. In...
Molecular communications (MC) has been studied as a bio-inspired information carrier for micro-scale...
Molecular communications (MC) has been studied as a bio-inspired information carrier for micro-scale...
Molecular communications (MC) has been studied as a bio-inspired information carrier for micro-scale...
Molecular communications (MC) has been studied as a bio-inspired information carrier for micro-scale...
yesThis article examines recent research in molecular communications from a telecommunications syst...
This demonstration will present the world's first macroscale molecular communication link to reliabl...
With much advancement in the field of nanotechnology, bioengineering and synthetic biology over the ...
Molecular communications (MC) offers an alternative to established methods (i.e., electromagnetic wa...
Always-on, always-available digital communication has changed the world – allowing us to collaborate...
Molecular communication (MC) involves the transmission of information using particles (i.e., molecul...
Abstract—In molecular communication, information is con-veyed through chemical messages. With much a...
Multi-scale molecular communication (MC) employs the characteristics of information molecules for in...
Molecular communications (MC) offers an alternative to established methods (i.e., electromagnetic wa...
Abstract—This demonstration will present the world’s first macroscale molecular communication link t...
Molecular communications (MC) is the use of molecules as carriers of information between devices. In...
Molecular communications (MC) has been studied as a bio-inspired information carrier for micro-scale...
Molecular communications (MC) has been studied as a bio-inspired information carrier for micro-scale...
Molecular communications (MC) has been studied as a bio-inspired information carrier for micro-scale...
Molecular communications (MC) has been studied as a bio-inspired information carrier for micro-scale...
yesThis article examines recent research in molecular communications from a telecommunications syst...
This demonstration will present the world's first macroscale molecular communication link to reliabl...