Search Results - "Chang, Donghee"
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Toward a low-cost high-voltage sodium aqueous rechargeable battery
Published in Materials today (Kidlington, England) (01-10-2019)“…[Display omitted] Recent discovery of high-concentration electrolyte systems has opened a new avenue toward the high-voltage, safe, and low-cost aqueous…”
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Super-Ionic Conduction in Solid-State Li7P3S11-Type Sulfide Electrolytes
Published in Chemistry of materials (26-12-2018)“…Here, we examine the intrinsic ion conduction properties of Li7P3S11-type materials, one of the important solid electrolytes for lithium batteries, through a…”
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3
Nanoscale Phenomena in Lithium-Ion Batteries
Published in Chemical reviews (22-07-2020)“…The electrochemical properties and performances of lithium-ion batteries are primarily governed by their constituent electrode materials, whose intrinsic…”
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First-Principles Investigations on Sodium Superionic Conductor Na11Sn2PS12
Published in Chemistry of materials (27-08-2019)“…Sodium superionic conductors are key components of solid-state sodium ion batteries, which are regarded as promising alternative energy storage options for…”
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5
Zinc oxide nanoparticle-polymeric thin films for dynamic strain sensing
Published in Journal of materials science (2011)“…Piezoelectric transducers are becoming increasingly popular for dynamic strain monitoring due to their small form factors and their ability to generate an…”
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6
Native Defects in Li10GeP2S12 and Their Effect on Lithium Diffusion
Published in Chemistry of materials (14-08-2018)“…Defects in crystals alter the intrinsic nature of pristine materials including their electronic/crystalline structure and charge-transport characteristics. The…”
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First-Principles Investigations on Sodium Superionic Conductor Na 11 Sn 2 PS 12
Published in Chemistry of materials (27-08-2019)Get full text
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8
Super-Ionic Conduction in Solid-State Li 7 P 3 S 11 -Type Sulfide Electrolytes
Published in Chemistry of materials (26-12-2018)Get full text
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Using First‐Principles Calculations for the Advancement of Materials for Rechargeable Batteries
Published in Advanced functional materials (26-10-2017)“…Rechargeable batteries have been regarded as leading candidates for energy storage systems to satisfy soaring energy demands and ensure efficient energy use,…”
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Factors Contributing to Path Hysteresis of Displacement and Conversion Reactions in Li Ion Batteries
Published in Chemistry of materials (24-11-2015)“…We investigate the thermodynamic and kinetic attributes of electrode materials that are necessary to suppress path hysteresis during displacement and…”
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Factors Contributing to Path Hysteresis of Displacement and Conversion Reactions in Li Ion Batteries
Published in Chemistry of materials (05-11-2015)Get full text
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12
Native Defects in Li 10 GeP 2 S 12 and Their Effect on Lithium Diffusion
Published in Chemistry of materials (14-08-2018)Get full text
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Ionic Conduction in Cubic Na3TiP3O9N, a Secondary Na-Ion Battery Cathode with Extremely Low Volume Change
Published in Chemistry of materials (27-05-2014)“…It is demonstrated that Na ions are mobile at room temperature in the nitridophosphate compound Na3TiP3O9N, with a diffusion pathway that is calculated to be…”
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14
Microscopic Insight into Tin Nanoparticle Magnesiation
Published in ACS applied energy materials (25-07-2022)“…Here, we demonstrate the magnesiation mechanism of Sn nanoparticles by performing liquid-phase electron microscopy. We discover that the sluggish Mg-ion…”
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Accordion Strain Accommodation Mechanism within the Epitaxially Constrained Electrode
Published in ACS energy letters (10-08-2018)“…The tremendous benefits of all-solid-state Li-ion batteries will only be reaped if the cycle-induced strain mismatch across the electrode/electrolyte…”
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Elucidating the origins of hysteresis and reaction mechanisms of electrode materials for Li and Na batteries
Published 01-01-2015“…Voltage hysteresis and irreversibility upon electrochemical cycling of promising electrode chemistries are major impediments to increasing the energy density…”
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Dissertation -
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Ionic Conduction in Cubic Na 3 TiP 3 O 9 N, a Secondary Na-Ion Battery Cathode with Extremely Low Volume Change
Published in Chemistry of materials (27-05-2014)Get full text
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Ionic Conduction in Cubic Na 3 TiP 3 O 9 N, a Secondary Na-Ion Battery Cathode with Extremely Low Volume Change
Published in Chemistry of materials (05-05-2014)Get full text
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Ionic Conduction in Cubic Na 3 TiP 3 O 9 N, a Secondary Na-Ion Battery Cathode with Extremely Low Volume Change
Published in Chemistry of materials (30-04-2014)“…We demonstrate that Na ions are mobile at room temperature in the nitridophosphate compound Na3TiP3O9N, with a diffusion pathway that is calculated to be fully…”
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Journal Article