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1
Low-Temperature Ion Exchange Synthesis of Layered LiNiO 2 S..:
Leonhard Karger (12359102) ; Daniel Weber (21452) ; Damian Goonetilleke (5572736)...
https://figshare.com/articles/journal_contribution/Low-Temperature_Ion_Exchange_Synthesis_of_Layered_LiNiO_sub_2_sub_Single_Crystals_with_High_Ordering/21816330. , 2023
https://figshare.com/articles/journal_contribution/Low-Temperature_Ion_Exchange_Synthesis_of_Layered_LiNiO_sub_2_sub_Single_Crystals_with_High_Ordering/21816330. , 2023
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2
Defect Chemistry of Individual Grains with and without Grai..:
Julian Zahnow (10023472) ; Michele Bastianello (10653016) ; Jürgen Janek (1272231).
https://figshare.com/articles/journal_contribution/Defect_Chemistry_of_Individual_Grains_with_and_without_Grain_Boundaries_of_Al-Doped_Ceria_Determined_Using_Well-Defined_Microelectrodes/19071520. , 2022
https://figshare.com/articles/journal_contribution/Defect_Chemistry_of_Individual_Grains_with_and_without_Grain_Boundaries_of_Al-Doped_Ceria_Determined_Using_Well-Defined_Microelectrodes/19071520. , 2022
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3
Comparing the Ion-Conducting Polymers with Sulfonate and Et..:
Chih-Hao Tsao (2820529) ; Tang-Kai Yang (10155289) ; Kun-You Chen (10155292)...
https://figshare.com/articles/journal_contribution/Comparing_the_Ion-Conducting_Polymers_with_Sulfonate_and_Ether_Moieties_as_Cathode_Binders_for_High-Power_Lithium-Ion_Batteries/14046175. , 2021
https://figshare.com/articles/journal_contribution/Comparing_the_Ion-Conducting_Polymers_with_Sulfonate_and_Ether_Moieties_as_Cathode_Binders_for_High-Power_Lithium-Ion_Batteries/14046175. , 2021
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4
Storage of Lithium Metal: The Role of the Native Passivatio..:
Svenja-K. Otto (6877479) ; Till Fuchs (5955341) ; Yannik Moryson (4504885)...
https://figshare.com/articles/journal_contribution/Storage_of_Lithium_Metal_The_Role_of_the_Native_Passivation_Layer_for_the_Anode_Interface_Resistance_in_Solid_State_Batteries/16974654. , 2021
https://figshare.com/articles/journal_contribution/Storage_of_Lithium_Metal_The_Role_of_the_Native_Passivation_Layer_for_the_Anode_Interface_Resistance_in_Solid_State_Batteries/16974654. , 2021
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5
Increased Performance Improvement of Lithium-Ion Batteries ..:
Marcel J. Herzog (11307583) ; Nicolas Gauquelin (1509586) ; Daniel Esken (2158057)..
https://figshare.com/articles/journal_contribution/Increased_Performance_Improvement_of_Lithium-Ion_Batteries_by_Dry_Powder_Coating_of_High-Nickel_NMC_with_Nanostructured_Fumed_Ternary_Lithium_Metal_Oxides/15833149. , 2021
https://figshare.com/articles/journal_contribution/Increased_Performance_Improvement_of_Lithium-Ion_Batteries_by_Dry_Powder_Coating_of_High-Nickel_NMC_with_Nanostructured_Fumed_Ternary_Lithium_Metal_Oxides/15833149. , 2021
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6
Impedance Analysis of NCM Cathode Materials: Electronic and..:
Julian Zahnow (10023472) ; Tim Bernges (5874257) ; Amalia Wagner (10023475)...
https://figshare.com/articles/journal_contribution/Impedance_Analysis_of_NCM_Cathode_Materials_Electronic_and_Ionic_Partial_Conductivities_and_the_Influence_of_Microstructure/13628641. , 2021
https://figshare.com/articles/journal_contribution/Impedance_Analysis_of_NCM_Cathode_Materials_Electronic_and_Ionic_Partial_Conductivities_and_the_Influence_of_Microstructure/13628641. , 2021
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7
The Working Principle of a Li 2 CO 3 /LiNbO 3 Coating on NC..:
Felix Walther (4892842) ; Florian Strauss (3358112) ; Xiaohan Wu (1515541)...
https://figshare.com/articles/journal_contribution/The_Working_Principle_of_a_Li_sub_2_sub_CO_sub_3_sub_LiNbO_sub_3_sub_Coating_on_NCM_for_Thiophosphate-Based_All-Solid-State_Batteries/14153553. , 2021
https://figshare.com/articles/journal_contribution/The_Working_Principle_of_a_Li_sub_2_sub_CO_sub_3_sub_LiNbO_sub_3_sub_Coating_on_NCM_for_Thiophosphate-Based_All-Solid-State_Batteries/14153553. , 2021
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8
High Performance All-Solid-State Batteries with a Ni-Rich N..:
David Kitsche (11023426) ; Yushu Tang (740929) ; Yuan Ma (189824)...
https://figshare.com/articles/journal_contribution/High_Performance_All-Solid-State_Batteries_with_a_Ni-Rich_NCM_Cathode_Coated_by_Atomic_Layer_Deposition_and_Lithium_Thiophosphate_Solid_Electrolyte/14843044. , 2021
https://figshare.com/articles/journal_contribution/High_Performance_All-Solid-State_Batteries_with_a_Ni-Rich_NCM_Cathode_Coated_by_Atomic_Layer_Deposition_and_Lithium_Thiophosphate_Solid_Electrolyte/14843044. , 2021
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9
Stabilizing the Cathode/Electrolyte Interface Using a Dry-P..:
Rajendra S. Negi (9077726) ; Philip Minnmann (11307988) ; Ruijun Pan (4011314)...
https://figshare.com/articles/journal_contribution/Stabilizing_the_Cathode_Electrolyte_Interface_Using_a_Dry-Processed_Lithium_Titanate_Coating_for_All-Solid-State_Batteries/15834304. , 2021
https://figshare.com/articles/journal_contribution/Stabilizing_the_Cathode_Electrolyte_Interface_Using_a_Dry-Processed_Lithium_Titanate_Coating_for_All-Solid-State_Batteries/15834304. , 2021
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10
In-Depth Characterization of Lithium-Metal Surfaces with XP..:
Svenja-K. Otto (6877479) ; Yannik Moryson (4504885) ; Thorben Krauskopf (4284037)...
https://figshare.com/articles/journal_contribution/In-Depth_Characterization_of_Lithium-Metal_Surfaces_with_XPS_and_ToF-SIMS_Toward_Better_Understanding_of_the_Passivation_Layer/13607459. , 2021
https://figshare.com/articles/journal_contribution/In-Depth_Characterization_of_Lithium-Metal_Surfaces_with_XPS_and_ToF-SIMS_Toward_Better_Understanding_of_the_Passivation_Layer/13607459. , 2021
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11
Analyzing Nanometer-Thin Cathode Particle Coatings for Lith..:
Yannik Moryson (4504885) ; Felix Walther (4892842) ; Joachim Sann (1897387)...
https://figshare.com/articles/journal_contribution/Analyzing_Nanometer-Thin_Cathode_Particle_Coatings_for_Lithium-Ion_Batteries_The_Example_of_TiO_sub_2_sub_on_NCM622/14974928. , 2021
https://figshare.com/articles/journal_contribution/Analyzing_Nanometer-Thin_Cathode_Particle_Coatings_for_Lithium-Ion_Batteries_The_Example_of_TiO_sub_2_sub_on_NCM622/14974928. , 2021
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12
Reaction of Li 1.3 Al 0.3 Ti 1.7 (PO 4 ) 3 and LiNi 0.6 Co ..:
Jean Philippe Beaupain (11521152) ; Katja Waetzig (11521155) ; Svenja-Katharina Otto (11521158)...
https://figshare.com/articles/journal_contribution/Reaction_of_Li_sub_1_3_sub_Al_sub_0_3_sub_Ti_sub_1_7_sub_PO_sub_4_sub_sub_3_sub_and_LiNi_sub_0_6_sub_Co_sub_0_2_sub_Mn_sub_0_2_sub_O_sub_2_sub_in_Co-Sintered_Composite_Cathodes_for_Solid-State_Batteries/16735197. , 2021
https://figshare.com/articles/journal_contribution/Reaction_of_Li_sub_1_3_sub_Al_sub_0_3_sub_Ti_sub_1_7_sub_PO_sub_4_sub_sub_3_sub_and_LiNi_sub_0_6_sub_Co_sub_0_2_sub_Mn_sub_0_2_sub_O_sub_2_sub_in_Co-Sintered_Composite_Cathodes_for_Solid-State_Batteries/16735197. , 2021
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13
Cycling Performance and Limitations of LiNiO 2 in Solid-Sta..:
Yuan Ma (189824) ; Jun Hao Teo (7901732) ; David Kitsche (11023426)...
https://figshare.com/articles/journal_contribution/Cycling_Performance_and_Limitations_of_LiNiO_sub_2_sub_in_Solid-State_Batteries/15124790. , 2021
https://figshare.com/articles/journal_contribution/Cycling_Performance_and_Limitations_of_LiNiO_sub_2_sub_in_Solid-State_Batteries/15124790. , 2021
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14
Synthesis and Postprocessing of Single-Crystalline LiNi 0.8..:
Roberto Fantin (10319815) ; Enrico Trevisanello (10319818) ; Raffael Ruess (7314998)...
https://figshare.com/articles/journal_contribution/Synthesis_and_Postprocessing_of_Single-Crystalline_LiNi_sub_0_8_sub_Co_sub_0_15_sub_Al_sub_0_05_sub_O_sub_2_sub_for_Solid-State_Lithium-Ion_Batteries_with_High_Capacity_and_Long_Cycling_Stability/14233540. , 1753
https://figshare.com/articles/journal_contribution/Synthesis_and_Postprocessing_of_Single-Crystalline_LiNi_sub_0_8_sub_Co_sub_0_15_sub_Al_sub_0_05_sub_O_sub_2_sub_for_Solid-State_Lithium-Ion_Batteries_with_High_Capacity_and_Long_Cycling_Stability/14233540. , 1753
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15
On the Additive Microstructure in Composite Cathodes and Al..:
Simon Randau (2565238) ; Felix Walther (4892842) ; Anton Neumann (8430840)...
https://figshare.com/articles/journal_contribution/On_the_Additive_Microstructure_in_Composite_Cathodes_and_Alumina-Coated_Carbon_Microwires_for_Improved_All-Solid-State_Batteries/13941688. , 1753
https://figshare.com/articles/journal_contribution/On_the_Additive_Microstructure_in_Composite_Cathodes_and_Alumina-Coated_Carbon_Microwires_for_Improved_All-Solid-State_Batteries/13941688. , 1753