Ion transport systems are critical to many societal challenges, particularly in applications involved in aqueous environments where traditional electronics may not be as well suited. The production and directed movement of photo-generated species to produce useful energy, the transportation of ions to generate clean water through desalination, and the implementation of devices capable of seamlessly interfacing with biological systems for sensing or therapeutic purposes are a few of the many examples that use ion transport that aim to improve our daily lives. In this work, three independent projects will be showcased that touch on ion transport systems with these applications in mind. Our first materials innovation is analogous to an electro...
Thesis (Ph.D.)--University of Washington, 2016-06The flow of protons is vital in biology, driving na...
Bioelectronics is an exciting field that combines electrical and computer engineering, materials sci...
Thesis (Ph.D.)--University of Washington, 2015Protons (H+) play an important role in controlling cel...
Ion transport systems are critical to many societal challenges, particularly in applications involve...
Bioelectronics is an interdisciplinary field of materials science, electrical engineering, and biote...
Organic electronic devices are considered as one of the best candidates to replace conventional inor...
Organic electronic devices are considered as one of the best candidates to replace conventional inor...
Organic electronic devices are considered as one of the best candidates to replace conventional inor...
Inorganic semiconductors permeate virtually every sphere of modern human existence. Micro-fabricated...
Inorganic semiconductors permeate virtually every sphere of modern human existence. Micro-fabricated...
In contrast to electronic systems, biology rarely uses electrons as the signal to regulate functions...
In contrast to electronic systems, biology rarely uses electrons as the signal to regulate functions...
In contrast to electronic systems, biology rarely uses electrons as the signal to regulate functions...
Bioelectronics is an exciting field that combines electrical and computer engineering, materials sci...
Long range electrical conduction in biomaterials is an increasingly active area of research, which i...
Thesis (Ph.D.)--University of Washington, 2016-06The flow of protons is vital in biology, driving na...
Bioelectronics is an exciting field that combines electrical and computer engineering, materials sci...
Thesis (Ph.D.)--University of Washington, 2015Protons (H+) play an important role in controlling cel...
Ion transport systems are critical to many societal challenges, particularly in applications involve...
Bioelectronics is an interdisciplinary field of materials science, electrical engineering, and biote...
Organic electronic devices are considered as one of the best candidates to replace conventional inor...
Organic electronic devices are considered as one of the best candidates to replace conventional inor...
Organic electronic devices are considered as one of the best candidates to replace conventional inor...
Inorganic semiconductors permeate virtually every sphere of modern human existence. Micro-fabricated...
Inorganic semiconductors permeate virtually every sphere of modern human existence. Micro-fabricated...
In contrast to electronic systems, biology rarely uses electrons as the signal to regulate functions...
In contrast to electronic systems, biology rarely uses electrons as the signal to regulate functions...
In contrast to electronic systems, biology rarely uses electrons as the signal to regulate functions...
Bioelectronics is an exciting field that combines electrical and computer engineering, materials sci...
Long range electrical conduction in biomaterials is an increasingly active area of research, which i...
Thesis (Ph.D.)--University of Washington, 2016-06The flow of protons is vital in biology, driving na...
Bioelectronics is an exciting field that combines electrical and computer engineering, materials sci...
Thesis (Ph.D.)--University of Washington, 2015Protons (H+) play an important role in controlling cel...