MasterIn recent years, researches on highly efficient energy storage systems have been actively conducted due to an increase in energy demand. In particular, lithium ion batteries (LIBs) are attracted attention as the most promising power storage device because they have higher energy density, higher charge/discharge rates and longer life as compared with other types of batteries. However, the LIBs developed so far does not exhibit sufficient energy density to drive electric vehicles and to store renewable energy due to the active material of graphite, which has a low theoretical capacity of 372 mAh/g. To increase the energy density of a LIBs, silicon-based anode materials have been actively studied because of their high theoretical capacit...
Electrolyte additives have the ability to increase the performance of Li-ion batteries in several wa...
As the demand for mobile energy storage devices has steadily increased during the past decades due t...
Transitioning into a zero-emission society will require massive efforts with respect to the harnessi...
Commercial lithium-ion batteries have excellent performance at room temperature for a few years (3-5...
The stability of electrode/electrolyte interfaces in Li-ion batteries is crucial to the performance,...
The current commercial lithium ion battery utilizes “host-guest” electrodes that allow for the inter...
Thesis advisor: Dunwei WangThesis advisor: Matthias WaegeleLithium metal anode (LMA) holds great pro...
Unstable electrode/electrolyte interface is the major cause of degradation for silicon (Si)-based an...
Recently, lithium-ion batteries (LIBs) have gained recognition as reliable power sources for transpo...
In order to utilize renewable energy sources to avoid adverse climate change caused by fossil fuel u...
There is a growing need for high energy, high power and safe lithium batteries for myriads of applic...
Lithium ion batteries are widely used as energy storage devices in a variety of products such as sma...
International audienceDue to its high capacity compared to graphite, silicon has attracted attention...
Silicon has emerged as the next‐generation anode material for high‐capacity lithium‐ion batteries (L...
Thesis (Ph.D.)--University of Washington, 2023Lithium-ion batteries have revolutionized the technolo...
Electrolyte additives have the ability to increase the performance of Li-ion batteries in several wa...
As the demand for mobile energy storage devices has steadily increased during the past decades due t...
Transitioning into a zero-emission society will require massive efforts with respect to the harnessi...
Commercial lithium-ion batteries have excellent performance at room temperature for a few years (3-5...
The stability of electrode/electrolyte interfaces in Li-ion batteries is crucial to the performance,...
The current commercial lithium ion battery utilizes “host-guest” electrodes that allow for the inter...
Thesis advisor: Dunwei WangThesis advisor: Matthias WaegeleLithium metal anode (LMA) holds great pro...
Unstable electrode/electrolyte interface is the major cause of degradation for silicon (Si)-based an...
Recently, lithium-ion batteries (LIBs) have gained recognition as reliable power sources for transpo...
In order to utilize renewable energy sources to avoid adverse climate change caused by fossil fuel u...
There is a growing need for high energy, high power and safe lithium batteries for myriads of applic...
Lithium ion batteries are widely used as energy storage devices in a variety of products such as sma...
International audienceDue to its high capacity compared to graphite, silicon has attracted attention...
Silicon has emerged as the next‐generation anode material for high‐capacity lithium‐ion batteries (L...
Thesis (Ph.D.)--University of Washington, 2023Lithium-ion batteries have revolutionized the technolo...
Electrolyte additives have the ability to increase the performance of Li-ion batteries in several wa...
As the demand for mobile energy storage devices has steadily increased during the past decades due t...
Transitioning into a zero-emission society will require massive efforts with respect to the harnessi...