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1,248 Results Found

  • Article
  • Open Access
4 Citations
4,002 Views
10 Pages

Preparation of Li2S-AlI3-LiI Composite Solid Electrolyte and Its Application in All-Solid-State Li-S Battery

  • Tran Anh Tu,
  • Nguyen Huu Huy Phuc,
  • Luong Thi Quynh Anh and
  • Tran Viet Toan

Novel (80Li2S − 20AlI3)·yLiI composite solid electrolytes (y = 5, 10, 15) were prepared by mechannochemical synthesis. XRD results showed that the pattern of 80Li2S − 20AlI3 was similar to that of AlI3, which means that Li2S was di...

  • Article
  • Open Access
13 Citations
3,364 Views
15 Pages

Perfluorosulfonic Acid Membrane for Lithium–Sulfur Batteries with S/C Cathodes

  • Andrey B. Yaroslavtsev,
  • Svetlana A. Novikova,
  • Daria Yu. Voropaeva,
  • Sergey A. Li and
  • Tatiana L. Kulova

6 October 2022

Polymer electrolyte based on Nafion-117 membranes in the Li+ form with intercalated 1,3-dioxolane-dimethoxyethane solvent mixtures (DOL-DME) has been obtained. The obtained electrolyte Nafion-Li+-DOL-DME has been characterized by DSC analysis, IR- an...

  • Review
  • Open Access
20 Citations
7,048 Views
27 Pages

3 February 2023

Currently, rechargeable lithium batteries are representative of high-energy-density battery systems. Nevertheless, the development of rechargeable lithium batteries is confined by numerous problems, such as anode volume expansion, dendrite growth of...

  • Feature Paper
  • Article
  • Open Access
6 Citations
4,213 Views
13 Pages

26 December 2022

Many transition-metal-oxide-based catalysts have been investigated to chemically bind soluble lithium polysulfides and accelerate their redox kinetics in lithium-sulfur (Li-S) battery chemistry. However, the intrinsic poor electrical conductivities o...

  • Article
  • Open Access
2 Citations
2,021 Views
10 Pages

27 September 2024

Using first-principles density functional theory (DFT) calculations and ab initio molecular dynamics (AIMD) simulations, we performed this study on the phase stability, the intrinsic redox stability, and the Li+ conductivity of Li10GexMo1−xP2S1...

  • Article
  • Open Access
5 Citations
4,927 Views
6 Pages

15 July 2021

A lithium superionic conductor of Li10GeP2S12 that exhibits the highest lithium ionic conductivity among the sulfide electrolytes and the most promising oxide electrolytes, namely, Li6.6La3Sr0.06Zr1.6Sb0.4O12 and Li6.6La3Zr1.6Sb0.4O12, are successful...

  • Article
  • Open Access
14 Citations
3,391 Views
17 Pages

Copper Zinc Sulfide (CuZnS) Quantum Dot-Decorated (NiCo)–S/Conductive Carbon Matrix as the Cathode for Li–S Batteries

  • Thanphisit Artchuea,
  • Assadawoot Srikhaow,
  • Chakrit Sriprachuabwong,
  • Adisorn Tuantranont,
  • I-Ming Tang and
  • Weeraphat Pon-On

14 July 2022

Sulfur composites consisting of electrochemical reactive catalysts/conductive materials are investigated for use in lithium–sulfur (Li–S) batteries (LSBs). In this paper, we report the synthesis, physicochemical and electrochemical proper...

  • Article
  • Open Access
12 Citations
4,727 Views
17 Pages

Preparation and Characterization of Large Area Li-NASICON Electrolyte Thick Films

  • Ricardo Jiménez,
  • Isabel Sobrados,
  • Sandra Martínez-Chaparro,
  • Angel Adolfo del Campo,
  • M. Lourdes Calzada,
  • Jesús Sanz,
  • Shu Yi Tsai,
  • Ming Rui Lin,
  • Kuan Zong Fung and
  • Algimantas Kežionis
  • + 1 author

The preparation of solid electrolyte ceramic membranes is the object of intense study for its fundamental parts in the development of all solid-state batteries and improved battery separators. In this work, the procurement of large area solid electro...

  • Article
  • Open Access
1,074 Views
23 Pages

4 April 2025

A straightforward chemical polymerization process was used to create the polyaniline/LiClO4/CuO nanoparticle (PLC) nanocomposite, which was then exposed to varying doses of electron beam (EB) radiation and studied. The FESEM, XRD, FTIR, DSC, TG/DTA,...

  • Article
  • Open Access
6 Citations
5,065 Views
18 Pages

Fast Li-Ion Conduction in Spinel-Structured Solids

  • Jan L. Allen,
  • Bria A. Crear,
  • Rishav Choudhury,
  • Michael J. Wang,
  • Dat T. Tran,
  • Lin Ma,
  • Philip M. Piccoli,
  • Jeff Sakamoto and
  • Jeff Wolfenstine

30 April 2021

Spinel-structured solids were studied to understand if fast Li+ ion conduction can be achieved with Li occupying multiple crystallographic sites of the structure to form a “Li-stuffed” spinel, and if the concept is applicable to prepare a high mixed...

  • Review
  • Open Access
108 Citations
10,724 Views
27 Pages

Application Progress of Polyaniline, Polypyrrole and Polythiophene in Lithium-Sulfur Batteries

  • Xiaodong Hong,
  • Yue Liu,
  • Yang Li,
  • Xu Wang,
  • Jiawei Fu and
  • Xuelei Wang

5 February 2020

With the urgent requirement for high-performance rechargeable Li-S batteries, besides various carbon materials and metal compounds, lots of conducting polymers have been developed and used as components in Li-S batteries. In this review, the synthesi...

  • Article
  • Open Access
20 Citations
4,453 Views
10 Pages

Dual Substitution and Spark Plasma Sintering to Improve Ionic Conductivity of Garnet Li7La3Zr2O12

  • Zhencai Dong,
  • Chao Xu,
  • Yongmin Wu,
  • Weiping Tang,
  • Shufeng Song,
  • Jianyao Yao,
  • Zhengyong Huang,
  • Zhaoyin Wen,
  • Li Lu and
  • Ning Hu

Garnet Li7La3Zr2O12 is one of the most promising solid electrolytes used for solid-state lithium batteries. However, low ionic conductivity impedes its application. Herein, we report Ta-doping garnets with compositions of Li7-xLa3Zr2-xTaxO12 (0.1 &le...

  • Article
  • Open Access
2 Citations
2,725 Views
12 Pages

N–Doped Porous Carbon Microspheres Derived from Yeast as Lithium Sulfide Hosts for Advanced Lithium-Ion Batteries

  • Sheng Liang,
  • Jie Chen,
  • Xuehua He,
  • Lingli Liu,
  • Ningning Zhou,
  • Lei Hu,
  • Lili Wang,
  • Dewei Liang,
  • Tingting Yu and
  • Chu Liang
  • + 1 author

14 October 2021

Lithium sulfide (Li2S) is considered to be the best potential substitution for sulfur-based cathodes due to its high theoretical specific capacity (1166 mAh g−1) and good compatibility with lithium metal-free anodes. However, the electrical insulatio...

  • Article
  • Open Access
12 Citations
4,319 Views
21 Pages

Optimizing the Ion Conductivity and Mechanical Stability of Polymer Electrolyte Membranes Designed for Use in Lithium Ion Batteries: Combining Imidazolium-Containing Poly(ionic liquids) and Poly(propylene carbonate)

  • Nataliya Kiriy,
  • Sezer Özenler,
  • Pauline Voigt,
  • Oliver Kobsch,
  • Jochen Meier-Haack,
  • Kerstin Arnhold,
  • Andreas Janke,
  • Upenyu L. Muza,
  • Martin Geisler and
  • Brigitte Voit
  • + 3 authors

27 January 2024

State-of-the-art Li batteries suffer from serious safety hazards caused by the reactivity of lithium and the flammable nature of liquid electrolytes. This work develops highly efficient solid-state electrolytes consisting of imidazolium-containing po...

  • Article
  • Open Access
9 Citations
3,707 Views
10 Pages

Li2(BH4)(NH2) Nanoconfined in SBA-15 as Solid-State Electrolyte for Lithium Batteries

  • Qianyi Yang,
  • Fuqiang Lu,
  • Yulin Liu,
  • Yijie Zhang,
  • Xiujuan Wang,
  • Yuepeng Pang and
  • Shiyou Zheng

Solid electrolytes with high Li-ion conductivity and electrochemical stability are very important for developing high-performance all-solid-state batteries. In this work, Li2(BH4)(NH2) is nanoconfined in the mesoporous silica molecule sieve (SBA-15)...

  • Article
  • Open Access
6 Citations
2,544 Views
13 Pages

Efficient Regulation of Polysulfides by Anatase/Bronze TiO2 Heterostructure/Polypyrrole Composites for High-Performance Lithium-Sulfur Batteries

  • Jing Liu,
  • Yong Liu,
  • Tengfei Li,
  • Longlong Liang,
  • Sifan Wen,
  • Yue Zhang,
  • Guilong Liu,
  • Fengzhang Ren and
  • Guangxin Wang

Despite having ultra-high theoretical specific capacity and theoretical energy density, lithium-sulfur (Li-S) batteries suffer from their low Coulombic efficiency and poor lifespan, and the commercial application of Li-S batteries is seriously hamper...

  • Article
  • Open Access
9 Citations
3,283 Views
15 Pages

15 April 2021

With a higher theoretical specific capacity (1675 mAh g−1) and energy density (2600 Wh kg−1), the lithium-sulfur (Li-S) battery is considered as a promising candidate for a next-generation energy storage device. However, the shuttle effect of polysul...

  • Article
  • Open Access
18 Citations
4,441 Views
11 Pages

6 April 2020

NASICON-type solid electrolytes with excellent stability in moisture are promising in all-solid-state batteries and redox flow batteries. However, NASIOCN LiZr2(PO4)3 (LZP), which is more stable with lithium metal than the commercial Li1.3Al0.3Ti1.7(...

  • Article
  • Open Access
9 Citations
4,242 Views
15 Pages

Electrical and Mechanical Characterisation of Poly(ethylene)oxide-Polysulfone Blend for Composite Structural Lithium Batteries

  • Francesco Gucci,
  • Marzio Grasso,
  • Stefano Russo,
  • Glenn J. T. Leighton,
  • Christopher Shaw and
  • James Brighton

5 June 2023

In this work, a blend of PEO, polysulfone (PSF), and lithium bis(trifluoromethanesulfonyl)imide (LiTFSi) was prepared at different PEO–PSf weight ratios (70-30, 80-20, and 90-10) and ethylene oxide to lithium (EO/Li) ratios (16/1, 20/1, 30/1, a...

  • Review
  • Open Access
4 Citations
3,103 Views
37 Pages

A Review of the Application of Metal-Based Heterostructures in Lithium–Sulfur Batteries

  • Yichao Luo,
  • Zhen Zhang,
  • Yaru Wang,
  • Yalong Zheng,
  • Xinyu Jiang,
  • Yan Zhao,
  • Yi Zhang,
  • Xiang Liu,
  • Zhoulu Wang and
  • Baizeng Fang

22 January 2025

Lithium–sulfur (Li-S) batteries are recognized as a promising alternative in the energy storage domain due to their high theoretical energy density, environmental friendliness, and cost-effectiveness. However, challenges such as polysulfide dis...

  • Article
  • Open Access
16 Citations
4,752 Views
10 Pages

25 March 2021

We report the stabilization of the high-temperature (high-T) phase of lithium carba-closo-decaborate, Li(CB9H10), via the formation of solid solutions in a Li(CB9H10)-Li2(B12H12) quasi-binary system. Li(CB9H10)-based solid solutions in which [CB9H10]...

  • Article
  • Open Access
21 Citations
3,299 Views
15 Pages

Electrical and Structural Properties of Li1.3Al0.3Ti1.7(PO4)3—Based Ceramics Prepared with the Addition of Li4SiO4

  • Konrad Kwatek,
  • Wioleta Ślubowska,
  • Jan Leszek Nowiński,
  • Agnieszka Teresa Krawczyńska,
  • Isabel Sobrados and
  • Jesús Sanz

30 September 2021

The currently studied materials considered as potential candidates to be solid electrolytes for Li-ion batteries usually suffer from low total ionic conductivity. One of them, the NASICON-type ceramic of the chemical formula Li1.3Al0.3Ti1.7(PO4)3, se...

  • Article
  • Open Access
13 Citations
3,614 Views
13 Pages

A Novel Synthesizing Strategy of 3D Cose2 Porous Hollow Flowers for High Performance Lithium–Sulfur Batteries

  • Wei Xu,
  • Qikai Wu,
  • Zhongmei Che,
  • Bin Fan,
  • Dengke Zhao,
  • Shuai Wang,
  • Aixia Han and
  • Ligui Li

18 February 2021

Redox kinetics of lithium polysulfides (LiPSs) conversion and poor electrical conductivity of sulfur during the charge-discharge process greatly inhibit the commercialization of high-performance lithium–sulfur (Li–S) batteries. Herein, we synthesized...

  • Article
  • Open Access
9 Citations
4,398 Views
12 Pages

Effects of LiBF4 Addition on the Lithium-Ion Conductivity of LiBH4

  • Laura M. de Kort,
  • Valerio Gulino,
  • Didier Blanchard and
  • Peter Ngene

28 March 2022

Complex hydrides, such as LiBH4, are a promising class of ion conductors for all-solid-state batteries, but their application is constrained by low ion mobility at room temperature. Mixing with halides or complex hydride anions, i.e., other complex h...

  • Article
  • Open Access
10 Citations
2,748 Views
16 Pages

15 February 2023

To solve the slow kinetics of polysulfide conversion reaction in Li-S battery, many transition metal nitrides were developed for sulfur hosts. Herein, novel polyaniline-coated porous vanadium nitride (VN) microrods were synthesized via a calcination,...

  • Article
  • Open Access
2,143 Views
14 Pages

Fluorine-free single-component polyelectrolytes were developed via the hybridization of lithium methanesulfonylsulfonimide (LiMSSI) moieties to poly(ethylene glycol) (PEG) derivatives with different morphologies, and the relationship between the stru...

  • Article
  • Open Access
18 Citations
5,231 Views
11 Pages

Ionic Conductivity of Lithium Phosphides

  • Alexey P. Maltsev,
  • Ilya V. Chepkasov,
  • Alexander G. Kvashnin and
  • Artem R. Oganov

2 May 2023

We comprehensively study the ionic conductivity in lithium phosphides, promising materials for energy storage applications, by using a combination of first-principles computations and machine learning interatomic potentials. Using the quasiharminic a...

  • Article
  • Open Access
1 Citations
2,784 Views
14 Pages

17 January 2023

The stability of Li3.8Ge0.9S0.1O4 lithium-conducting solid electrolyte versus lithium metal and Li–V bronze Li1.3V3O8 is studied in the present research. Isothermal heat treatment and thermal analysis of the mixtures of Li1.3V3O8 and Li3.8Ge0.9...

  • Article
  • Open Access
12 Citations
5,161 Views
14 Pages

5 December 2018

A modified polyphosphazene was synthesized using a mixed substitution at phosphorus consisting of 2-(2-methoxyethoxy)ethoxy side groups and anionic trifluoroborate groups. The primary goal was to increase the low lithium ion conductivities of the con...

  • Article
  • Open Access
20 Citations
7,827 Views
19 Pages

The Effects of Lithium Sulfur Battery Ageing on Second-Life Possibilities and Environmental Life Cycle Assessment Studies

  • Deidre Wolff,
  • Lluc Canals Casals,
  • Gabriela Benveniste,
  • Cristina Corchero and
  • Lluís Trilla

25 June 2019

The development of Li-ion batteries has enabled the re-entry of electric vehicles into the market. As car manufacturers strive to reach higher practical specific energies (550 Wh/kg) than what is achievable for Li-ion batteries, new alternatives for...

  • Article
  • Open Access
3 Citations
2,329 Views
13 Pages

ZIF-67-Derived Flexible Sulfur Cathode with Improved Redox Kinetics for High-Performance Li-S Batteries

  • Chen Cheng,
  • Hanyan Wu,
  • Xinyang Chen,
  • Shuiping Cai,
  • Yingkang Tian,
  • Xiaofei Yang and
  • Xuejie Gao

17 April 2024

Lithium–sulfur (Li-S) batteries have received much attention due to their high energy density and low price. In recent years, alleviating the volume expansion and suppressing the shuttle effect during the charge and discharge processes of Li-S...

  • Article
  • Open Access
6 Citations
3,589 Views
15 Pages

15 July 2021

Recently, the electrical conductive electrolyte based on flexible polymeric films have been attracted much attentions, due to their applications in batteries, thermoelectrics, temperature sensors and others. In this regard, two polymeric electrolytes...

  • Article
  • Open Access
22 Citations
9,483 Views
11 Pages

7 December 2022

Argyrodite solid electrolytes such as lithium phosphorus sulfur chloride (Li6PS5Cl) have recently attracted great attention due to their excellent lithium-ion transport properties, which are applicable to all-solid-state lithium batteries. In this st...

  • Review
  • Open Access
7 Citations
4,214 Views
27 Pages

Theoretical Calculations Facilitating Catalysis for Advanced Lithium-Sulfur Batteries

  • Xue-Ting Fang,
  • Lei Zhou,
  • Chunguang Chen,
  • Dmitri L. Danilov,
  • Fen Qiao,
  • Haitao Li and
  • Peter H. L. Notten

27 October 2023

Lithium-sulfur (Li-S) batteries have emerged as one of the most hopeful alternatives for energy storage systems. However, the commercialization of Li-S batteries is still confronted with enormous hurdles. The poor conductivity of sulfur cathodes indu...

  • Review
  • Open Access
109 Citations
18,755 Views
12 Pages

Polymer Electrolytes for Lithium/Sulfur Batteries

  • Yan Zhao,
  • Yongguang Zhang,
  • Denise Gosselink,
  • The Nam Long Doan,
  • Mikhail Sadhu,
  • Ho-Jae Cheang and
  • Pu Chen

9 August 2012

This review evaluates the characteristics and advantages of employing polymer electrolytes in lithium/sulfur (Li/S) batteries. The main highlights of this study constitute detailed information on the advanced developments for solid polymer electrolyt...

  • Article
  • Open Access
9 Citations
7,628 Views
17 Pages

4 July 2013

In this study, we tethered terminal uracil groups onto short-chain poly(ethylene glycol) (PEG) to form the polymers, uracil (U)-PEG and U-PEG-U. Through AC impedance measurements, we found that the conductivities of these polymers increased upon inc...

  • Article
  • Open Access
29 Citations
8,742 Views
13 Pages

Electrochemical Properties of LiFePO4 Cathodes: The Effect of Carbon Additives

  • Irina Stenina,
  • Polina Minakova,
  • Tatiana Kulova and
  • Andrey Yaroslavtsev

5 September 2022

The influence of different conductive additives (carbon nanofibers (CNFs), carbon nanoplatelets, and pyrolytic carbon from sucrose (Sucr) or polyvinylidene fluoride) on the morphology, electron conductivity, and electrochemical performance of LiFePO4...

  • Article
  • Open Access
2 Citations
1,502 Views
12 Pages

In Situ Synthesis of CoMoO4 Microsphere@rGO as a Matrix for High-Performance Li-S Batteries at Room and Low Temperatures

  • Ronggang Zhang,
  • Haiji Xiong,
  • Jia Liang,
  • Jinwei Yan,
  • Dingrong Deng,
  • Yi Li and
  • Qihui Wu

31 October 2024

Lithium–sulfur batteries (Li-S batteries) have attracted wide attention due to their high theoretical energy density and the low cost of sulfur cathode material. However, the poor conductivity of the sulfur cathode, the polysulfide shuttle effe...

  • Article
  • Open Access
8 Citations
3,664 Views
14 Pages

Interface Engineering of a NASICON-Type Electrolyte Using Ultrathin CuS Film for Lithium Metal Batteries

  • Shengnan Zhang,
  • Dongming Liu,
  • Lin Zhang,
  • Jianwei Li,
  • Guoqing Zhao,
  • Lijie Ci and
  • Guanghui Min

NASICON-type Li1.5Al0.5Ge1.5(PO4)3 (LAGP) is a remarkable solid-state electrolyte due to its high ionic conductivity and excellent air stability. However, the weak LAGP|Li interfacial compatibility (e.g., chemical instability of LAGP with Li metal an...

  • Article
  • Open Access
5 Citations
2,527 Views
12 Pages

MOF-Derived CeO2 Nanorod as a Separator Coating Enabling Enhanced Performance for Lithium–Sulfur Batteries

  • Hao Xiao,
  • Jian Qin,
  • Haodong Wang,
  • Xiaoxu Lai,
  • Pei Shi,
  • Chi Chen and
  • Dan Sun

18 April 2024

The deployment of Li–S batteries in the commercial sector faces obstacles due to their low electrical conductivity, slow redox reactions, quick fading of capacity, and reduced coulombic efficiency. These issues stem from the “shuttle effe...

  • Article
  • Open Access
13 Citations
4,017 Views
14 Pages

26 August 2022

Li7La3Zr2O12 (LLZO) is a promising and safe solid electrolyte for all-solid-state batteries. To achieve high ionic conductivity of LLZO, stabilizing the cubic phase and reducing Li loss during the sintering process is essential. Therefore, reducing t...

  • Article
  • Open Access
5 Citations
3,461 Views
12 Pages

2 July 2024

Lithium chloride (LiCl) is an inexpensive and environmentally friendly salt abundant in the ocean. However, the insolubility of LiCl in conventional electrolyte solvents prevents the practical use of LiCl for lithium-ion batteries. Here, we report a...

  • Article
  • Open Access
16 Citations
7,109 Views
8 Pages

Determination of Diffusion Coefficients of Lithium in Solid Electrolyte LiPON

  • Alexander Rudy,
  • Alexander Mironenko,
  • Victor Naumov,
  • Alena Novozhilova,
  • Alexander Skundin and
  • Ivan Fedorov

A structural model of LiPON solid electrolyte, containing elements that simulate drift conductivity, diffusion conductivity, and leakage current was proposed. The dependence of the impedance of the structural model on frequency was calculated, and th...

  • Review
  • Open Access
15 Citations
4,337 Views
22 Pages

17 August 2023

The development of solid electrolytes with high conductivity is one of the key factors in the creation of new power-generation sources. Lithium-ion solid electrolytes based on Li7La3Zr2O12 (LLZ) with a garnet structure are in great demand for all-sol...

  • Review
  • Open Access
5 Citations
3,860 Views
26 Pages

Cellulose-Based Materials and Their Application in Lithium–Sulfur Batteries

  • Muriel Zampieri,
  • Guillermina Tommasone,
  • Luciana Morel and
  • Guillermina Leticia Luque

10 January 2025

Lithium–sulfur (Li-S) batteries are promising candidates for next-generation energy storage due to their high energy density, cost-effectiveness, and environmental friendliness. However, their commercialization is hindered by challenges, such a...

  • Article
  • Open Access
1,284 Views
11 Pages

1 May 2025

The halide solid-state electrolyte Li3InCl6 (LIC) is an excellent solid-state electrolyte for lithium-ion batteries. In this study, phosphoric acid (H3PO4) solution was added during the preparation of Li3InCl6 to obtain LIC samples with high ionic co...

  • Article
  • Open Access
9 Citations
2,856 Views
16 Pages

Investigating the Influence of Diverse Functionalized Carbon Nanotubes as Conductive Fibers on Paper-Based Sulfur Cathodes in Lithium–Sulfur Batteries

  • Xuan Ren,
  • Haiwei Wu,
  • Ya Xiao,
  • Haoteng Wu,
  • Huan Wang,
  • Haiwen Li,
  • Yuchen Guo,
  • Peng Xu,
  • Baohong Yang and
  • Chuanyin Xiong

Lithium–sulfur (Li–S) batteries are expected to be one of the next generations of high-energy-density battery systems due to their high theoretical energy density of 2600 Wh kg−1. Embracing the trends toward flexibility, lightweight...

  • Article
  • Open Access
5 Citations
3,284 Views
10 Pages

Ionic Conductivity of Hybrid Composite Solid Polymer Electrolytes of PEOnLiClO4-Cubic Li7La3Zr2O12 Films

  • Parisa Bashiri,
  • T. Prasada Rao,
  • Gholam-Abbas Nazri,
  • Ratna Naik and
  • Vaman M. Naik

22 November 2021

Ionic conductivity of the polyethylene oxide-LiClO4 (PEOnLiClO4) solid polymer electrolyte (SPE) films with an EO:Li ratio (n) of 10, 12, 15, as well as the hybrid composite solid polymer electrolyte (CSPE) films of PEOnLiClO4 containing 50 wt% of cu...

  • Article
  • Open Access
2 Citations
2,239 Views
11 Pages

17 April 2024

Lithium–sulfur (Li–S) batteries with a high theoretical energy density of 2600 Wh·kg−1 are hindered by challenges such as low S conductivity, the polysulfide shuttle effect, low S reduction conversion rate, and sluggish Li2S...

  • Article
  • Open Access
4 Citations
2,696 Views
12 Pages

9 September 2024

Stabilized Li6.25La3Al0.25 Zr2O12 (cubic LLZO or c-LLZO) is a Li+-conducting ceramic with ionic conductivities approaching 1 mS-cm. Processing c-LLZO so that it is suitable for use as a solid state electrolyte in all solid state batteries, however, i...

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