This profile is built from public research funding records (CIHR, NSERC and SSHRC) and PubMed. We have not imported them from a University of Alberta directory, so their courses may be missing. Find their university profile.
Research
Latest papers
Sintering of W-substituted Na3SbS4 electrolytes: effect of phase composition, voids, and interface contact.
Chemical communications (Cambridge, England) · 2026 · senior author
Halogen-Substituted Li3InCl6: Insights into the Evolved Structure, Composition, and Ionic Conductivity.
The journal of physical chemistry letters · 2025 · senior author
Noncovalent Interactions Promoted Kinetics in Perylene Diimide-Based Aqueous Zn-Ion Batteries: An Operando Attenuated Total Reflection Infrared Study.
The journal of physical chemistry letters · 2025 · senior author
Latest funding
- $25,000
IIT Kanpur - UAlberta Training Platform for Air-stable, Long-cycle-life Solid-State Batteries
NSERC · 2024 · Principal investigator
- $4,000,000
Co-designing a Smartwear Revolution: Augmenting Mobility, Independence, and Ability through Transformative Clothing Technology
SSHRC · 2024 · Co-investigator
- $412,348
Recycling and Upcycling of Graphite Anodes from Spent Lithium-ion Batteries
NSERC · 2023 · Co-investigator
8 publications.
Sintering of W-substituted Na3SbS4 electrolytes: effect of phase composition, voids, and interface contact.
Wen F, You X, Xie G, Mar A, Sang L
Halogen-Substituted Li3InCl6: Insights into the Evolved Structure, Composition, and Ionic Conductivity.
Lin Z, Wen F, Dey T, Mar A, Sang L
Noncovalent Interactions Promoted Kinetics in Perylene Diimide-Based Aqueous Zn-Ion Batteries: An Operando Attenuated Total Reflection Infrared Study.
Melath S, You X, Sang L
Dual-Component Interlayer Enables Uniform Lithium Deposition and Dendrite Suppression for Solid-State Batteries.
You X, Chen N, Xie G, Xu S, Sayed SY, Sang L
Mechanochemistry in Sodium Thioantimonate Solid Electrolytes: Effects on Structure, Morphology, and Electrochemical Performance.
Wen F, Xie G, Chen N, Wu Q, Chaudhary M, You X, Michaelis VK, Mar A, Sang L
Degradation at the Na3SbS4/Anode Interface in an Operating All-Solid-State Sodium Battery.
Xie G, Tang M, Xu S, Brown A, Sang L
Histidine Ligated Iron-Sulfur Peptides.
Valer L, Rossetto D, Parkkila T, Sebastianelli L, Guella G, Hendricks AL, Cowan JA, Sang L, Mansy SS
Rapid access to (cycloalkyl)tellurophene oligomer mixtures and the first poly(3-aryltellurophene).
Luppi BT, McDonald R, Ferguson MJ, Sang L, Rivard E
IIT Kanpur - UAlberta Training Platform for Air-stable, Long-cycle-life Solid-State Batteries
Principal investigators: Sang, Lingzi L
Keywords: electrochemical interfaces; electrochemistry; in-situ spectroscopy; solid electrolytes; solid-state sodium batteries
Co-designing a Smartwear Revolution: Augmenting Mobility, Independence, and Ability through Transformative Clothing Technology
Principal investigators: Mushahwar, Vivian
Recycling and Upcycling of Graphite Anodes from Spent Lithium-ion Batteries
Principal investigators: Liu, Jian J
Keywords: circular economy; energy storage; environmental impact; graphite; life cycle assessment; lithium-ion battery; molecular dynamics simulation; recycling; regeneration
Hybrid electrolyte membranes for the next-generation printable all-solid lithium batteries
Principal investigators: Sang, Lingzi L
Solid-Solid Interfacial Chemistry in Energy Storage and Conversion Systems
Principal investigators: Sang, Lingzi
Keywords: surface and interface chemistry; in-situ measurements; energy materials; vibrational spectroscopy; electrochemistry; synchrotron x-ray spectroscopy; battery; perovskite solar cell
Solid-Solid Interfacial Chemistry in Energy Storage and Conversion Systems
Principal investigators: Sang, Lingzi
From CIHR, NSERC and SSHRC funding decisions: CIHR since 2008, NSERC since 1991 and SSHRC since 1998, including their latest published competition results.
Frequent collaborators
- Arthur Mar and Lingzi Sang: 3 shared papers
- Eric Rivard and Lingzi Sang: 1 shared paper
- Chemistry
Co-authors at University of Alberta, colored by department. Thicker lines mean more shared papers; select anyone to open their profile and their own map.
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