With the advancement of nanofabrication techniques and the growth and synthesis of novel low-dimensional materials, such graphene and transition metal dichalcogenides, it is possible to probe the fundamental principles of ion and molecule transport down to the single-atom scale. Understanding these ionic and atomic interactions during molecular transport at an atomic level play a pivotal role in developing solid-state aquaporins or bio- mimicking artificial membrane proteins channels. Apart from biological processes in living cells, ionic transport plays a vital role in membrane-based technologies such as water purification, desalination, separation techniques and energy harvesting. This thesis focuses on developing low-dimensional devices ...
Abstract Two-dimensional (2D) materials provide an intriguing means to not only study...
In recent years, advances in nanotechnology have allowed researchers to manufacture pores in synthet...
Nanopore-based devices provide the ability to detect, analyze and manipulate molecules by monitoring...
With the advancement of nanofabrication techniques and the growth and synthesis of novel low-dimensi...
Nanopore-based devices provide the ability to detect, analyze and manipulate molecules by monitoring...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Ca...
Biological cells are filled with a variety of pores and channels that transport ions and molecules a...
Atomically thin two-dimensional (2D) materials have flourished as one of the leading topics in conde...
International audienceFundamental understanding of ionic transport at the nanoscale is essential for...
A detailed characterization of the physics of novel nanopore systems has the potential to revolution...
Solid state nanopores are single-molecular devices governed by nanoscale physics with a broad potent...
In this dissertation, I examine ion transport in nanopores, which has been met with increased intere...
Classical ionic conduction through an inorganic monolayer nanopore is analogous to the quantum-mecha...
Solid-state nanopores are a nanofluidic platform with unique advantages for single-molecule analysis...
Nanomaterials, materials with particle dimensions less than 100 nm, show a range of unusual properti...
Abstract Two-dimensional (2D) materials provide an intriguing means to not only study...
In recent years, advances in nanotechnology have allowed researchers to manufacture pores in synthet...
Nanopore-based devices provide the ability to detect, analyze and manipulate molecules by monitoring...
With the advancement of nanofabrication techniques and the growth and synthesis of novel low-dimensi...
Nanopore-based devices provide the ability to detect, analyze and manipulate molecules by monitoring...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Ca...
Biological cells are filled with a variety of pores and channels that transport ions and molecules a...
Atomically thin two-dimensional (2D) materials have flourished as one of the leading topics in conde...
International audienceFundamental understanding of ionic transport at the nanoscale is essential for...
A detailed characterization of the physics of novel nanopore systems has the potential to revolution...
Solid state nanopores are single-molecular devices governed by nanoscale physics with a broad potent...
In this dissertation, I examine ion transport in nanopores, which has been met with increased intere...
Classical ionic conduction through an inorganic monolayer nanopore is analogous to the quantum-mecha...
Solid-state nanopores are a nanofluidic platform with unique advantages for single-molecule analysis...
Nanomaterials, materials with particle dimensions less than 100 nm, show a range of unusual properti...
Abstract Two-dimensional (2D) materials provide an intriguing means to not only study...
In recent years, advances in nanotechnology have allowed researchers to manufacture pores in synthet...
Nanopore-based devices provide the ability to detect, analyze and manipulate molecules by monitoring...