Haidong Liu
Forskare vid Institutionen för kemi - Ångström; Strukturkemi
- Telefon:
- 018-471 37 37
- E-post:
- haidong.liu@kemi.uu.se
- Besöksadress:
- Lägerhyddsvägen 1
- Postadress:
- Box 538
751 21 Uppsala
Ladda ned kontaktuppgifter för Haidong Liu vid Institutionen för kemi - Ångström; Strukturkemi

Publikationer
Senaste publikationer
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Ingår i ACS Sustainable Chemistry and Engineering, s. 280-291, 2026
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Ingår i Journal of Power Sources, 2026
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Ingår i Chemical Science, s. 15714-15722, 2025
- DOI för Synthetic control guided by growth mechanism insights enable tailored precursors for layered oxide cathodes
- Ladda ner fulltext (pdf) av Synthetic control guided by growth mechanism insights enable tailored precursors for layered oxide cathodes
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Ingår i Ceramics International, s. 38141-38151, 2025
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Ingår i Rare Metals, s. 8465-8475, 2025
Alla publikationer
Artiklar i tidskrift
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Ingår i ACS Sustainable Chemistry and Engineering, s. 280-291, 2026
-
Ingår i Journal of Power Sources, 2026
-
Ingår i Chemical Science, s. 15714-15722, 2025
- DOI för Synthetic control guided by growth mechanism insights enable tailored precursors for layered oxide cathodes
- Ladda ner fulltext (pdf) av Synthetic control guided by growth mechanism insights enable tailored precursors for layered oxide cathodes
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Ingår i Ceramics International, s. 38141-38151, 2025
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Ingår i Rare Metals, s. 8465-8475, 2025
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Multi-element co-doping boosts P2/O3 biphasic stability for high-performance sodium storage
Ingår i Journal of Alloys and Compounds, 2025
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Storage-Induced Surface/Interfacial Degradation of Ni-Rich Layered Cathodes
Ingår i ACS Applied Energy Materials, s. 7929-7938, 2025
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Ingår i Chemical Engineering Journal, 2024
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Ingår i Journal of Materials Chemistry A, s. 23506-23517, 2024
- DOI för Synthesis and characterization of a crystalline Na4Fe3(PO4)2(P2O7) cathode material for sodium-ion batteries
- Ladda ner fulltext (pdf) av Synthesis and characterization of a crystalline Na4Fe3(PO4)2(P2O7) cathode material for sodium-ion batteries
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Phase modulation of nickel-tin alloys in regulating electrocatalytic nitrogen reduction properties
Ingår i Rare Metals, s. 2851-2858, 2024
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Ingår i Journal of Materials Chemistry A, s. 25393-25406, 2024
- DOI för Study of degradation mechanisms in aqueous-processed Ni-rich cathodes for enhanced sustainability of batteries
- Ladda ner fulltext (pdf) av Study of degradation mechanisms in aqueous-processed Ni-rich cathodes for enhanced sustainability of batteries
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Ingår i Energies, 2024
- DOI för Rational Design of Electrolyte Additives for Improved Solid Electrolyte Interphase Formation on Graphite Anodes: A Study of 1,3,6-Hexanetrinitrile
- Ladda ner fulltext (pdf) av Rational Design of Electrolyte Additives for Improved Solid Electrolyte Interphase Formation on Graphite Anodes: A Study of 1,3,6-Hexanetrinitrile
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Ingår i RSC Advances, s. 20520-20529, 2023
- DOI för The role of ethylene carbonate (EC) and tetramethylene sulfone (SL) in the dissolution of transition metals from lithium-ion cathodes
- Ladda ner fulltext (pdf) av The role of ethylene carbonate (EC) and tetramethylene sulfone (SL) in the dissolution of transition metals from lithium-ion cathodes
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Ingår i ACS Applied Energy Materials, s. 11458-11467, 2023
- DOI för Investigating Surface Reactivity of a Ni-Rich Cathode Material toward CO2, H2O, and O2 Using Ambient Pressure X-ray Photoelectron Spectroscopy
- Ladda ner fulltext (pdf) av Investigating Surface Reactivity of a Ni-Rich Cathode Material toward CO2, H2O, and O2 Using Ambient Pressure X-ray Photoelectron Spectroscopy
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Ingår i Nature Communications, 2023
- DOI för Rapid determination of solid-state diffusion coefficients in Li-based batteries via intermittent current interruption method
- Ladda ner fulltext (pdf) av Rapid determination of solid-state diffusion coefficients in Li-based batteries via intermittent current interruption method
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Cobalt Oxide Arrays Anchored to Copper Foam as Efficient Binder‐free Anode for Lithium Ion Batteries
Ingår i ChemPhysChem, 2023
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Ingår i ChemElectroChem, 2022
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Ingår i Electrochimica Acta, 2021
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On the Manganese Dissolution Process from LiMn2O4 Cathode Materials
Ingår i ChemElectroChem, s. 1516-1523, 2021
- DOI för On the Manganese Dissolution Process from LiMn2O4 Cathode Materials
- Ladda ner fulltext (pdf) av On the Manganese Dissolution Process from LiMn2O4 Cathode Materials
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The Surface Chemistry of Thin Lithium-Metal Electrodes in Lithium-Sulfur Cells
Ingår i Batteries & Supercaps, s. 1370-1376, 2020
- DOI för The Surface Chemistry of Thin Lithium-Metal Electrodes in Lithium-Sulfur Cells
- Ladda ner fulltext (pdf) av The Surface Chemistry of Thin Lithium-Metal Electrodes in Lithium-Sulfur Cells
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Feasibility of Chemically Modified Cellulose Nanofiber Membranes as Lithium-Ion Battery Separators
Ingår i ACS Applied Materials and Interfaces, s. 41211-41222, 2020
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Ingår i Advanced Materials Interfaces, 2020
- DOI för Understanding the Roles of Tris(trimethylsilyl) Phosphite (TMSPi) in LiNi0.8Mn0.1Co0.1O2 (NMC811)/Silicon-Graphite (Si-Gr) Lithium-Ion Batteries
- Ladda ner fulltext (pdf) av Understanding the Roles of Tris(trimethylsilyl) Phosphite (TMSPi) in LiNi0.8Mn0.1Co0.1O2 (NMC811)/Silicon-Graphite (Si-Gr) Lithium-Ion Batteries
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Electrochemically Active, Compressible, and Conducting Silk Fibroin Hydrogels
Ingår i Industrial & Engineering Chemistry Research, s. 9310-9317, 2020
- DOI för Electrochemically Active, Compressible, and Conducting Silk Fibroin Hydrogels
- Ladda ner fulltext (pdf) av Electrochemically Active, Compressible, and Conducting Silk Fibroin Hydrogels
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Ingår i Angewandte Chemie International Edition, s. 19027-19033, 2019
- DOI för Efficient BiVO4 Photoanodes by Postsynthetic Treatment: Remarkable Improvements in Photoelectrochemical Performance from Facile Borate Modification
- Ladda ner fulltext (pdf) av Efficient BiVO4 Photoanodes by Postsynthetic Treatment: Remarkable Improvements in Photoelectrochemical Performance from Facile Borate Modification
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Ingår i ACS Applied Energy Materials, s. 7162-7170, 2019
Artiklar, forskningsöversikt
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Advances in studying interfacial reactions in rechargeable batteries by photoelectron spectroscopy
Ingår i Journal of Materials Chemistry A, s. 19466-19505, 2022
- DOI för Advances in studying interfacial reactions in rechargeable batteries by photoelectron spectroscopy
- Ladda ner fulltext (pdf) av Advances in studying interfacial reactions in rechargeable batteries by photoelectron spectroscopy