Sc-doping in Na3Zr2Si2PO12 electrolytes enables
Jan 1, 2023 · Solid-state sodium batteries (SSSBs) display great potential in scale energy storage for their safety, cost and sustainability. However, it is a great challenge to achieve high ionic
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Jan 1, 2023 · Solid-state sodium batteries (SSSBs) display great potential in scale energy storage for their safety, cost and sustainability. However, it is a great challenge to achieve high ionic
Feb 25, 2022 · Lithium–ion battery (LIB) suffers from safety risks and narrow operational temperature range in despite the rapid drop in cost over the past
Dec 30, 2024 · The metal–carbon dioxide batteries, emerging as high-energy–density energy storage devices, enable direct CO2 utilization, offering promising prospects for CO2 capture
Mar 1, 2025 · 1. Introduction Lithium-ion batteries (LIBs) are among the most advanced rechargeable batteries available today, with applications ranging from mobile electronics to
Jan 1, 2025 · In this study, electrochemical impedance spectroscopy tests were conducted on sodium-ion batteries, and a fractional-order equivalent circuit model in a wide temperature
Jun 18, 2025 · Xianglin Li et al. develop a dual-phase-transition composite material for lithium battery thermal management, achieving rapid heating,
3 days ago · Stable operation over wide temperature ranges is still a great challenge for lithium-sulfur batteries facing actual operating environments.
Feb 24, 2025 · An integrated conjugated microporous polymer composite electrode (C 4 N/rGO) with high conductivity, large specific surface area and good solvent resistance was prepared
Apr 15, 2024 · Lithium-ion batteries (LIBs) are critical components of electric vehicles and energy storage systems. However, low ambient temperatures can significantly slow down the
As energy demand increases, we''ve found that traditional lithium batteries struggle to meet the needs of environments with large day-to-night
Mar 12, 2025 · We report a bioinspired gel polymer electrolyte that enables high-energy-density Li metal batteries to work stably in a wide temperature range
Dec 1, 2022 · Sodium metal batteries (SMBs) are currently investigated as an alternative technology to lithium-ion batteries for stationary energy storage systems. However, operation
Nov 22, 2024 · This review specifically focuses on the effects of temperature on the rechargeable lithium batteries (RLBs), trying to clarify the key parameters
Aug 1, 2020 · Lithium metal batteries (LMBs) that use lithium metal as the anode are considered as one of the most promising energy storage systems because of their high specific capacity
Jan 28, 2025 · Despite the rapid progress in energy storage technology, the utilization of lithium-ion batteries remains constrained by their costliness and
May 26, 2025 · All-solid-state lithium-ion batteries (ASSLBs) are promising next-generation energy storage solutions with improved safety and energy density.
May 11, 2025 · The critical role of solid electrolyte interphase (SEI) in determining the temperature-dependent performance of lithium metal batteries is unveiled. Through SEI
Feb 1, 2025 · Abstract High-voltage Li metal batteries are promising energy storage technologies owing to their high energy densities (>400 Wh kg −1). However, high-voltage Li metal batteries
Mar 5, 2024 · The continuous growth of electrification of transportation and grid energy storage applications has driven the demand for broadening the
5 days ago · Both systems demonstrate excellent performance across a wide temperature range (−50 to 50 °C). This multifunctional interface enables simultaneous optimization of both
Apr 24, 2024 · Lithium-ion batteries, the predominant energy storage technology, are increasingly challenged to function across a broad thermal spectrum. As
Jun 18, 2025 · Phase-change materials (PCMs) have shown great potential in the thermal management (TM) of lithium batteries (LBs), but they still face significant challenges in
Aug 25, 2023 · Sodium metal with a high theoretical specific capacity (∼1166 mA h g−1) and low redox potential (−2.71 V) shows tremendous application
Jun 26, 2025 · In extreme scenarios such as polar scientific research equipment, aerospace equipment, and new energy vehicles in cold/hot areas, the wide-temperature range stability of
PKNERGY has overcome the battery temperature limit through its innovative aluminum-based cathode patent, developing a wide-temperature range LFP
Feb 29, 2024 · In electrochemical energy storage (EES), lithium-sulfur (Li−S) batteries have recently gained recognition for their exceptional theoretical specific capacity, making them
Jun 4, 2025 · The all-vanadium flow battery (VFB) has emerged as a highly promising large-scale, long-duration energy storage technology due to its
Wide-temperature-range dual-ion batteries (WT-DIBs) represent an innovative class of energy storage systems, distinguished by their capacity to maintain high efficiency, safety, and
Apr 2, 2024 · The shortage of resources such as lithium and cobalt has promoted the development of novel battery systems with low cost, abundance, high
Aug 1, 2024 · Aqueous zinc metal batteries (AZMBs) are considered a crucial option for large-scale energy storage due to the abundance of electrode materials and the environmentally
The optimal design of liquid electrolytes is vital for the build-up of long-lifespan lithium-metal batteries (LMBs) that function over a wide-temperature-range.
Jan 1, 2023 · Li metal is considered to be the most ideal anode due to its highest energy density, but traditional lithium-metal liquid-electrolyte battery system suffers from low Coulombic
Jan 1, 2023 · Overall, this class of battery configuration may open up a promising route for high-energy-density, cost-effective, high-safety, wide-temperature-range, low-stress and dendrite
The application relates to a wide temperature range energy storage battery pack device, which comprises: a heat dissipation case for accommodating the battery pack; the heat dissipation
Aug 1, 2021 · Also, the battery shows a stable cycle performance with a limited discharge/charge capacity of 500 mAh g -1 at an extra-wide operating temperature from −73 ℃ to 120 ℃. This
The battery can operate at neglectable external pressure (3 kPa) and exhibits good performance in a wide temperature range (−20∼50 °C). Moreover, a high reversible discharge capacity (140.4 mAh/g) and high efficiencies (99.7% Coulombic efficiency and >96% energy efficiency after ∼100 cycles) have been achieved when operating at 30 °C.
Results show that the rate performance of the battery is better at room temperature (30℃), with a capacity of 64.2 mAh g −1 maintained at 2 C. When the temperature drops to 5℃, the battery can only operate at current rates smaller than 0.5 C, at which (0.5 C) 45 mAh g −1 capacity is delivered.
Our work proposes an effective strategy for the rational design of wide-temperature-range electrode materials and electrolytes, which can achieve all-weather use of the next generation of secondary zinc-ion batteries. To access this article, please review the available access options below.
Finally, we point out challenges, strategies and outlooks for the future practical applications of wide-temperature-range SMBs. Overall, this review provides a design guide for SMBs with high energy density, long lifespan, low-cost and high security, and could inspire more researchers to focus on the mechanism of batteries in extreme environments.
However, it is worth noting that the battery can still cycle stably at −20℃ and 0.1C, with a relatively high discharge capacity of 79.4 mAh g −1. This indicates that the Li 1.5 BP 3 DME 10 battery system can operate in a wide temperature range (−20℃∼50℃) and is suitable for a variety of application scenarios.
More notably, the liquid lithium battery exhibits stable cycling performance, under ambient operation conditions (i.e., room temperature with neglectable external pressure of 3 kPa, measured by a specially-designed set up as shown in Supporting Fig. S7).