lithium

Rational Design of Well-Dispersed Ultrafine CoS2 Nanocrystals in Micro-Mesoporous Carbon Spheres with Synergistic Effect for High-Performance Lithium-Sulfur Batteries

J. Mater. Chem. A, 2020, Accepted Manuscript
DOI: 10.1039/D0TA02692A, Paper
Zhanshuang Jin, Ming Zhao, Tianning Lin, Bingqiu Liu, Qi Zhang, Lingyu Zhang, Lihua Chen, Lu Li, Zhong-Min Su, Chungang Wang
The physical confinement and chemical catalysis of lithium polysulfides (LiPSs) are effective ways to improve the performance of lithium-sulfur (Li-S) batteries. How to effectively combine physical confinement and chemical catalysis...
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lithium

Rational Understanding of the Catalytic Mechanism of Molybdenum Carbide on Polysulfide Conversion in Lithium-Sulfur Battery

J. Mater. Chem. A, 2020, Accepted Manuscript
DOI: 10.1039/D0TA01217C, Paper
Mingzhu Sun, Zhao Wang, Xue Li, Haibo Li, Hongsheng Jia, Xiangxin Xue, Ming Jin, Jiaqi Li, Yu Xie, Ming Feng
Lithium-sulfur (Li-S) batteries are promising candidates for next-generation energy storage devices due to its high theoretical energy density, whose practical applications are mainly hampered by the shuttle effect of intermediate...
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lithium

Towards practical lithium-metal anodes

Chem. Soc. Rev., 2020, Advance Article
DOI: 10.1039/C9CS00838A, Review Article
Xin Zhang, Yongan Yang, Zhen Zhou
Lithium ion batteries cannot meet the ever increasing demands of human society. Thus batteries with Li-metal anodes are eyed to revive. Here we summarize the recent progress in developing practical Li-metal anodes for various Li-based batteries.
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lithium

[ASAP] Current Challenges and Routes Forward for Nonaqueous Lithium–Air Batteries

Chemical Reviews
DOI: 10.1021/acs.chemrev.9b00545




lithium

[ASAP] Lithium–Oxygen Batteries and Related Systems: Potential, Status, and Future

Chemical Reviews
DOI: 10.1021/acs.chemrev.9b00609




lithium

[ASAP] Lithium Vapor Chemistry of Hyper-Stoichiometric Lithium Metatitanate Li<sub>2.12(2)</sub>TiO<sub>3+<italic toggle="yes">y</italic></sub>

The Journal of Physical Chemistry C
DOI: 10.1021/acs.jpcc.0c02454




lithium

Natural Resource Governance, Grievances and Conflict: The Case of the Bolivian Lithium Program / by Janine Romero Valenzuela

Online Resource




lithium

Construction of hierarchical MoSe2@C hollow nanospheres for efficient lithium/sodium ion storage

Inorg. Chem. Front., 2020, 7,1691-1698
DOI: 10.1039/D0QI00017E, Research Article
Xueqian Zhang, Yali Xiong, Mengfei Dong, Zhiguo Hou, Yitai Qian
Hierarchical MoSe2@C hollow nanospheres are synthesized via an anion-exchange reaction and exhibit good electrochemical performance.
The content of this RSS Feed (c) The Royal Society of Chemistry




lithium

Construction of well-designed 1D selenium–tellurium nanorods anchored on graphene sheets as a high storage capacity anode material for lithium-ion batteries

Inorg. Chem. Front., 2020, 7,1750-1761
DOI: 10.1039/C9QI01701A, Research Article
Sadeeq Ullah, Ghulam Yasin, Aftab Ahmad, Lei Qin, Qipeng Yuan, Arif Ullah Khan, Usman Ali Khan, Aziz Ur Rahman, Yassine Slimani
The graphical illustration of the preparation of the SeTe@rGO composite material and its electrochemical application in Li-ion batteries.
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lithium

Rational design of the pea-pod structure of SiOx/C nanofibers as a high-performance anode for lithium ion batteries

Inorg. Chem. Front., 2020, 7,1762-1769
DOI: 10.1039/D0QI00069H, Research Article
Yuchao Zheng, Xiangzhong Kong, Ibrahim Usman, Xuefang Xie, Shuquan Liang, Guozhong Cao, Anqiang Pan
Pea-pod structured SiOx/C nanofibers were synthesized by the electrospinning method, whose structure can be controlled by adjusting the addition amounts of organosilica-polymer nanospheres and they exhibit superior electrochemical performance.
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lithium

A one-pot synthesis of hetero-Co9S8–NiS sheets on graphene to boost lithium–sulfur battery performance

Inorg. Chem. Front., 2020, Advance Article
DOI: 10.1039/C9QI01691K, Research Article
Liang Chen, Xuefang Xie, Zhian Zhang, Xiangzhong Kong, Shuquan Liang, Anqiang Pan
Graphene decorated with hetero-Co9S8–NiS sheets have abundant active sites, which can efficiently catalyze the electrochemical conversion of lithium polysulfides in Li–S battery.
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lithium

Constructing heterostructured FeS2/CuS nanospheres as high rate performance lithium ion battery anodes

Inorg. Chem. Front., 2020, 7,1900-1908
DOI: 10.1039/C9QI01674K, Research Article
Xiaoxia Xu, Lingjie Li, Huiqing Chen, XiaoSong Guo, Zhonghua Zhang, Jing Liu, Changming Mao, Guicun Li
Heterostructured porous FeS2/CuS nanospheres exhibit enhanced reaction kinetics, excellent rate capability and desirable long-term cycling stability performance.
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lithium

Ultrafast Amidation of Esters using Lithium Amides under Aerobic Ambient Temperature Conditions in Sustainable Solvents

Chem. Sci., 2020, Accepted Manuscript
DOI: 10.1039/D0SC01349H, Edge Article
Open Access
Michael Fairley, Leonie Bole, Florian Mulks, Laura Main, Alan Kennedy, Charles T. O'Hara, Joaquín García-Álvarez, Eva Hevia
Lithium amides constitute one of the most commonly used class of reagents in synthetic chemisty. However, despite many applications, their use is handicapped by their requirements of low temperatures, in...
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lithium

Handbook of lithium and natural calcium chloride : their deposits, processing, uses and properties / Donald E. Garrett (Saline Processors, Inc., Ojai, California)

Garrett, Donald E., author




lithium

[ASAP] Self-Regulated Phenomenon of Inorganic Artificial Solid Electrolyte Interphase for Lithium Metal Batteries

Nano Letters
DOI: 10.1021/acs.nanolett.0c01400




lithium

Lithium metal deposition/dissolution under uniaxial pressure with high-rigidity layered polyethylene separator

RSC Adv., 2020, 10,17805-17815
DOI: 10.1039/D0RA02788J, Paper
Open Access
  This article is licensed under a Creative Commons Attribution 3.0 Unported Licence.
Shogo Kanamori, Mitsuhiro Matsumoto, Sou Taminato, Daisuke Mori, Yasuo Takeda, Hoe Jin Hah, Takashi Takeuchi, Nobuyuki Imanishi
The use of a high rigidity separator and application of an appropriate amount of pressure are effective approaches to control lithium metal growth and improve its cycle performance.
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lithium

Facile synthesis of porous Co3O4 nanoflakes as an interlayer for high performance lithium–sulfur batteries

Dalton Trans., 2020, 49,5677-5683
DOI: 10.1039/D0DT00429D, Paper
Xiao-Xiao Zheng, Shi-Xi Zhao, Jin-Lin Yang, Yi-Ming Lu, Qi-Long Wu, Xiang-Tian Zeng
Co3O4 nanoflakes were fabricated using oil bath and calcination methods. Lithium–sulfur batteries with Co3O4–super P interlayer exhibited better performance attributed to the synergistic effects of Co3O4–super P.
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lithium

Hollow-structure engineering of a silicon–carbon anode for ultra-stable lithium-ion batteries

Dalton Trans., 2020, 49,5669-5676
DOI: 10.1039/D0DT00566E, Paper
Hongbin Liu, Yun Chen, Bo Jiang, Yue Zhao, Xiaolin Guo, Tingli Ma
Hollow silicon nanotubes were successfully synthesized in situ on a carbon substrate, which effectively accommodate the volume expansion of silicon and exhibit ultra-stable performance as the anode of lithium-ion batteries.
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lithium

Lilac Solutions raises funds for new lithium extraction method




lithium

Making lithium-ion batteries more environmentally friendly

New process uses water-soluble binders to avoid the need for organic solvents in manufacturing and recycling




lithium

[ASAP] Paper-Based Device for the Facile Colorimetric Determination of Lithium Ions in Human Whole Blood

ACS Sensors
DOI: 10.1021/acssensors.9b02218




lithium

Rational design of two-dimensional nanomaterials for lithium–sulfur batteries

Energy Environ. Sci., 2020, 13,1049-1075
DOI: 10.1039/C9EE02049G, Review Article
Milan Jana, Rui Xu, Xin-Bing Cheng, Jeong Seok Yeon, Jae Min Park, Jia-Qi Huang, Qiang Zhang, Ho Seok Park
2D materials, their features and possible approaches to mitigating the challenges in Li–S batteries are discussed.
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lithium

Structure-related electrochemical performance of organosulfur compounds for lithium–sulfur batteries

Energy Environ. Sci., 2020, 13,1076-1095
DOI: 10.1039/C9EE03848E, Review Article
Xiaoyin Zhang, Ke Chen, Zhenhua Sun, Guangjian Hu, Ru Xiao, Hui-Ming Cheng, Feng Li
This review proposes a deep insight into the mutual interactions among structures, synthesis, and electrochemical performance and mechanisms of organosulfur compounds in lithium–sulfur batteries.
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lithium

A stable high-voltage lithium-ion battery realized by an in-built water scavenger

Energy Environ. Sci., 2020, 13,1197-1204
DOI: 10.1039/D0EE00060D, Communication
Zhi Chang, Yu Qiao, Han Deng, Huijun Yang, Ping He, Haoshen Zhou
A simple metal–organic framework (MOF) based in-built water scavenger can efficiently eliminate various hazards induced by water in lithium rechargeable batteries.
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lithium

Solar-driven all-solid-state lithium–air batteries operating at extreme low temperatures

Energy Environ. Sci., 2020, 13,1205-1211
DOI: 10.1039/C9EE04039K, Communication
Hucheng Song, Sheng Wang, Xiaoying Song, Jue Wang, Kezhu Jiang, Shihua Huang, Min Han, Jun Xu, Ping He, Kunji Chen, Haoshen Zhou
Plasmon-enhanced solar photothemal battery (STPB) technology allows all-solid-state lithium–air batteries to operate at temperatures as low as −73 °C.
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lithium

A new lithium diffusion model in layered oxides based on asymmetric but reversible transition metal migration

Energy Environ. Sci., 2020, 13,1269-1278
DOI: 10.1039/C9EE04123K, Paper
Kyojin Ku, Byunghoon Kim, Sung-Kyun Jung, Yue Gong, Donggun Eum, Gabin Yoon, Kyu-Young Park, Jihyun Hong, Sung-Pyo Cho, Do-Hoon Kim, Hyungsub Kim, Eunsuk Jeong, Lin Gu, Kisuk Kang
We propose a new lithium diffusion model involving coupled lithium and transition metal migration, peculiarly occurring in a lithium-rich layered oxide.
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lithium

Unveiling the Mechanisms of Lithium Dendrite Suppression by Cationic Polymer Film Induced Solid-Electrolyte Interphase Modification

Energy Environ. Sci., 2020, Accepted Manuscript
DOI: 10.1039/D0EE00518E, Paper
Seung-Yong Lee, Junyi Shangguan, Judith Alvarado, Sophia Betzler, Stephen J Harris, Marca Doeff, Haimei Zheng
It is crucial to suppress lithium dendrite formation in lithium metal batteries. Formation of good solid-electrolyte interphase (SEI) has been considered to be effective in limiting lithium dendrite growth. However,...
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lithium

[ASAP] Three-Dimensional Porous Carbon Skeleton Synthesized by a Template-Free and No-Post-Activation Process Applied for High-Performance Lithium–Sulfur Batteries

ACS Sustainable Chemistry & Engineering
DOI: 10.1021/acssuschemeng.9b07502




lithium

[ASAP] A Lithium-Ion Rechargeable Full Cell Using the Flower-like Na<sub>3</sub>V<sub>2</sub>(PO<sub>4</sub>)<sub>3</sub>@C Cathode and Li<sub>4</sub>Ti<sub>5</sub>O<sub>12</

ACS Sustainable Chemistry & Engineering
DOI: 10.1021/acssuschemeng.0c02609




lithium

[ASAP] Revealing the Dissolution Mechanism of Polyvinylidene Fluoride of Spent Lithium-Ion Batteries in Waste Oil-Based Methyl Ester Solvent

ACS Sustainable Chemistry & Engineering
DOI: 10.1021/acssuschemeng.0c02072




lithium

Ultrafast synthesis of 2-(benzhydrylthio)benzo[d]oxazole, an antimalarial drug, via an unstable lithium thiolate intermediate in a capillary microreactor

React. Chem. Eng., 2020, 5,849-852
DOI: 10.1039/D0RE00038H, Communication
Bandaru T. Ramanjaneyulu, Shinde Vidyacharan, Gwang-Noh Ahn, Dong-Pyo Kim
We present an ultrafast approach for the synthesis of 2-(benzhydrylthio)benzo[d]oxazole, an antimalarial drug, in 75% yield from benzo[d]oxazole-2-thiol and benzhydryl bromide via an unstable lithium thiolate intermediate in the presence of n-BuLi.
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lithium

[ASAP] Lithium Ion Conduction in Cathode Coating Materials from On-the-Fly Machine Learning

Chemistry of Materials
DOI: 10.1021/acs.chemmater.9b04663




lithium

[ASAP] Lithium Diffusion in Niobium Tungsten Oxide Shear Structures

Chemistry of Materials
DOI: 10.1021/acs.chemmater.0c00483




lithium

[ASAP] Electrochemically Stable, High Transference Number Lithium Bis(malonato)borate Polymer Solution Electrolytes

Chemistry of Materials
DOI: 10.1021/acs.chemmater.9b05219




lithium

[ASAP] Superionic Lithium Intercalation through 2 × 2 nm<sup>2</sup> Columns in the Crystallographic Shear Phase Nb<sub>18</sub>W<sub>8</sub>O<sub>69</sub>

Chemistry of Materials
DOI: 10.1021/acs.chemmater.9b05403




lithium

[ASAP] Covalent Triazine Frameworks Incorporating Charged Polypyrrole Channels for High-Performance Lithium–Sulfur Batteries

Chemistry of Materials
DOI: 10.1021/acs.chemmater.0c00246




lithium

[ASAP] Bromine–Lithium Exchange on a <italic toggle="yes">gem</italic>-Dibromoalkene, Part 2: Comparative Performance of Flow Micromixers

Organic Process Research & Development
DOI: 10.1021/acs.oprd.0c00203




lithium

[ASAP] Development and Production of an Enantioselective Tetrahydroisoquinoline Synthesis Enabled by Continuous Cryogenic Lithium–Halogen Exchange

Organic Process Research & Development
DOI: 10.1021/acs.oprd.0c00141




lithium

MOF-derived lithiophilic CuO nanorod arrays for stable lithium metal anodes

Nanoscale, 2020, 12,9416-9422
DOI: 10.1039/D0NR01091J, Paper
Lei Wei, Li Li, Teng Zhao, Nanxiang Zhang, Yuanyuan Zhao, Feng Wu, Renjie Chen
MOF-derived CuO nanorod arrays with lithiophilic groups were fabricated on a Cu foil current collector (CuO NAs/CF) to produce stable lithium metal batteries with uniform, dendrite-free Li deposition.
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lithium

Facile synthesis of core–shell structured Si@graphene balls as a high-performance anode for lithium-ion batteries

Nanoscale, 2020, 12,9616-9627
DOI: 10.1039/D0NR01346C, Paper
Anif Jamaluddin, Bharath Umesh, Fuming Chen, Jeng-Kuei Chang, Ching-Yuan Su
Encapsulating silicon (Si) nanoparticles with graphene nanosheets in a microspherical structure is proposed to increase electrical conductivity and solve stability issues when using Si as an anode material in lithium-ion batteries (LIBs).
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lithium

Theoretical Anchoring Effect of New Phosphorus Allotropes for Lithium-sulfur Batteries

Nanoscale, 2020, Accepted Manuscript
DOI: 10.1039/D0NR02359K, Paper
Chunmei Li, Linxin He, Jianglei Luo, Jianfeng Tang, Nanpu Cheng, Zhiqian Chen
Lithium-sulfur battery system has appeared as a new-generation alternative to lithium-ion batteries with 5-7 times higher specific energy density than conventional lithium-ion batteries. But its commercial implementation is still impeded...
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lithium

Light element and lithium isotope signatures of the emii reservoir - the society islands, french polynesia




lithium

Thermal response of lithium tantalate for temperature measurement




lithium

Lithium: a doctor, a drug, and a breakthrough / Walter A. Brown

Hayden Library - RC516.B78 2019




lithium

Lithium-ion battery chemistry : a primer / John T. Warner

Warner, John (John T.), author




lithium

Novel decavanadate compounds for lithium-ion batteries: en route towards a new class of high-performance energy materials / Simon Greiner

Online Resource




lithium

[ASAP] An Outlook on Low-Volume-Change Lithium Metal Anodes for Long-Life Batteries

ACS Central Science
DOI: 10.1021/acscentsci.0c00351




lithium

China’s Tianqi to get stake in Chilean lithium maker SQM




lithium

Fire-retardant electrolyte could usher in practical lithium metal batteries

Solution containing lithium salt-solvent clusters makes lithium metal batteries safer and long-lasting




lithium

Fire-retardant electrolyte could usher in practical lithium-metal batteries

Solution containing lithium salt-solvent clusters makes lithium-metal batteries safer and long lasting