Organic batteries for a greener rechargeable world

This Review compares the performance of redox-active organic materials from a practical viewpoint and discusses their potential in various post-lithium-ion-battery platforms.

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A retrospective on lithium-ion batteries | Nature Communications

Anode. Lithium metal is the lightest metal and possesses a high specific capacity (3.86 Ah g − 1) and an extremely low electrode potential (−3.04 V vs. standard hydrogen electrode), rendering ...

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Challenges and advances of organic electrode materials for …

[203, 204] Generally, the overall mass energy density of full organic battery is closely related to the kinds of electrode materials, the ratio of anode and cathode materials, the type and amount of electrolyte. 4.1 All-organic full batteries. The all …

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Perspectives on the Redox Chemistry of Organic Electrode Materials …

It was not until 2002 that the organic radical compound, poly(2,2,6,6-tetramethylpiperidinyloxy methacrylate) (PTMA), was proven to possess redox activity in lithium batteries. 24 With the increasing concerns on resources and environmental issues, more organic compounds with different redox chemistries such as imine compounds, compounds with ...

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A Quinone-Based Cathode Material for High-Performance Organic Lithium ...

With the increased application of batteries in powering electric vehicles as well as potential contributions to utility-scale storage, there remains a need to identify and develop efficient and sustainable active materials for use in lithium (Li)- and sodium (Na)-ion batteries. Organic cathode materials provide a desirable alternative to inorganic counterparts, which often come …

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Towards high performance polyimide cathode materials for lithium ...

Exfoliation of covalent organic frameworks into few-layer redox-active nanosheets as cathode materials for lithium-ion batteries J. Am. Chem. Soc., 139 ( 2017 ), pp. 4258 - 4261 Crossref View in Scopus Google Scholar

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Emerging Lithiated Organic Cathode Materials for Lithium-Ion Full Batteries

Organic electrode materials have application potential in lithium batteries owing to their high capacity, abundant resources, and structural designability. However, most reported organic cathodes are at oxidized states (namely unlithiated compounds) and thus need to couple with Li-rich anodes.

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A Nitro-Rich Small-Molecule-Based Organic Cathode …

Organic cathode materials have attracted extensive research interest for rechargeable lithium-ion batteries (LIBs) because of their diverse structures and tunable properties. However, the preparation of organic cathode …

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Positioning Organic Electrode Materials in the Battery Landscape

Active exploration of OBEMs as active electrode materials for rechargeable batteries started with conductive polymers (CPs; e.g., polythiophene) from the early 1980s to late 1990s. 3 CP-based batteries showed comparable specific energy and cycling stability with those of lead-acid batteries, but the costly and unsafe lithium anode and organic electrolytes did …

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Structural design of organic battery electrode materials: from DFT …

Although the organic battery was first reported in 1969 [], the research declined drastically with the commercialization of lithium-ion battery (LIB) based on the inorganic LiCoO 2 cathode by Sony Corporation from 1991 pared with the organic conductive polymer-based battery, much more appealing performance of LIB at that time drove the whole research and …

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Emerging Lithiated Organic Cathode Materials for …

Organic electrode materials have application potential in lithium batteries owing to their high capacity, abundant resources, and structural designability. However, most reported organic cathodes are at oxidized states …

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Benchmarking organic active materials for aqueous redox flow batteries ...

Flow batteries are one option for future, low-cost stationary energy storage. We present a perspective overview of the potential cost of organic active materials for aqueous flow batteries based ...

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Next-generation batteries could go organic, cobalt-free for long ...

Swapping out cobalt for an organic compound in lithium-ion battery cathodes could help speed the global conversion to electric vehicles. ... Previous researchers have developed cathodes from more abundant and lower cost carbon-containing materials, including organosulfur and carbonyl compounds, but those prototypes couldn''t match the energy ...

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High-performance lithium–organic batteries by achieving 16 lithium ...

Organic materials have attracted intensive research interest in lithium ion batteries (LIBs) due to their advantages of structural diversity, low cost and sustainability in nature.

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Improving lithium-sulfur batteries with metal-organic framework …

A comprehensive review published in Nano Research outlines how metal-organic framework-based cathode materials could improve the performance of lithium-sulfur batteries, making them a practical ...

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Organic Anode Materials for Lithium-Ion Batteries: Recent ...

In the search for novel anode materials for lithium-ion batteries (LIBs), organic electrode materials have recently attracted substantial attention and seem to be the next preferred candidates for use as high-performance anode materials in rechargeable LIBs due to their low cost, high theoretical capacity, structural diversity, environmental friendliness, and …

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Polymer-Based Organic Batteries | Chemical Reviews

The storage of electric energy is of ever growing importance for our modern, technology-based society, and novel battery systems are in the focus of research. The substitution of conventional metals as redox-active material by organic materials offers a promising alternative for the next generation of rechargeable batteries since these organic …

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Organic Electrode Materials for Rechargeable Lithium Batteries

Organic Electrode Materials for Rechargeable Lithium Batteries. Yanliang Liang, Yanliang Liang. Key Laboratory of Advanced Energy Materials Chemistry, (Ministry of Education), Chemistry College, Nankai University, Tianjin 300071, China ... Herein thirty years'' research efforts in the field of organic compounds for rechargeable lithium batteries ...

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Organic Electrode Materials for Rechargeable Lithium …

Organic Electrode Materials for Rechargeable Lithium Batteries. Yanliang Liang, Yanliang Liang. Key Laboratory of Advanced Energy Materials Chemistry, (Ministry of Education), Chemistry College, Nankai University, Tianjin 300071, …

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Assessing n‐type organic materials for lithium batteries: A techno ...

The most relevant cathode materials for organic batteries are reviewed, and a detailed cost and performance analysis of n-type material-based battery packs using the BatPaC 5.0 software is presented. The analysis considers the influence of electrode design choices, such as the conductive carbon content, active material mass loading, and ...

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A Layered Organic Cathode for High-Energy, Fast-Charging, and …

Here, we describe a layered organic electrode material whose high electrical conductivity, high storage capacity, and complete insolubility enable reversible intercalation of …

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A reflection on lithium-ion battery cathode chemistry

Layered LiCoO 2 with octahedral-site lithium ions offered an increase in the cell voltage from <2.5 V in TiS 2 to ~4 V. Spinel LiMn 2 O 4 with tetrahedral-site lithium ions offered an increase in ...

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Emerging Lithiated Organic Cathode Materials for …

Here we summarize the synthesis, stability, and battery applications of lithiated organic cathode materials, including synthetic methods, stability against O 2 and H 2 O in air, and strategies to improve comprehensive …

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Challenges and advances of organic electrode …

[203, 204] Generally, the overall mass energy density of full organic battery is closely related to the kinds of electrode materials, the ratio of anode and cathode materials, the type and amount of electrolyte. 4.1 All-organic full batteries. …

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A high capacity small molecule quinone cathode for ...

Cui, J. et al. Organic cathode materials for rechargeable zinc batteries: mechanisms, challenges, and perspectives. Chemsuschem 13, 2160–2185 (2020). Article CAS PubMed Google Scholar

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Long‐life high‐capacity lithium battery with liquid organic cathode …

Moreover, the organic lithium battery assembled with Li 7 P 3 S 11 and room-temperature high-safety dendrite-free liquid lithium metal anode Li-BP-DME shows longer cycle life and higher capacity compared with the organic lithium battery using the liquid electrolyte. These results show that this new secondary battery has the advantages of long ...

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Li-ion battery materials: present and future

Li-ion batteries have an unmatchable combination of high energy and power density, making it the technology of choice for portable electronics, power tools, and hybrid/full electric vehicles [1].If electric vehicles (EVs) replace the majority of gasoline powered transportation, Li-ion batteries will significantly reduce greenhouse gas emissions [2].

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Prospects of organic electrode materials for practical lithium …

Organic materials have attracted much attention for their utility as lithium-battery electrodes because their tunable structures can be sustainably prepared from …

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Long Cycle Life for Rechargeable Lithium Battery using Organic …

Long Cycle Life for Rechargeable Lithium Battery using Organic Small Molecule Dihydrodibenzo[c,h][2,6]naphthyridine-5,11-dione as a Cathode after Isoindigo Pigment Isomerization. ... In contrast, organic materials offer designated theoretical capacity, cost-effectiveness, eco-friendliness, compatibility with multiple metal ions, and tunability ...

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Organic Electrode Materials for Energy Storage and Conversion ...

ConspectusLithium ion batteries (LIBs) with inorganic intercalation compounds as electrode active materials have become an indispensable part of human life. However, the rapid increase in their annual production raises concerns about limited mineral reserves and related environmental issues. Therefore, organic electrode materials (OEMs) for …

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