The development of aqueous Zn-based energy storage devices is severely restricted by uncontrollable Zn dendrite growth, serious parasitic side-reactions, and poor low-temperature performance. In this work, we introduce glycerol (Gl) with an …
Consult MoreThe circular economy in renewable energy areas involves the valorization of wastes like crude glycerol from the biodiesel production. In this work, crude glycerol was evaluated as biofuel for fuel cells applications on PdBi nanomaterials synthesized by a green chemical method involving protic ionic liquids. ...
Consult MoreA solution casting method has been utilisedto fabricate plasticisednatural gelatin (NG)-based polymer electrolyte films. The NG electrolyte with 50 wt.% glycerol and 13 wt.% sodium nitrate (NaNO3) …
Consult MoreRechargeable batteries that can operate at elevated temperatures (>70 °C) with high energy density are long-awaited for industrial applications including mining, grid stabilization, naval, aerospace, and medical devices. However, the safety, cycle life, energy density, and cost of the available high-temperature battery technologies remain an …
Consult MoreARTICLE Layered double hydroxide membrane with high hydroxide conductivity and ion selectivity for energy storage device Jing Hu1,2,4, Xiaomin Tang2,3,4, Qing Dai1,2, Zhiqiang Liu 3, Huamin Zhang1 ...
Consult MoreIn this work, energy storage devices based on plasticized chitosan biopolymer electrolytes were studied. The polymer electrolyte system of CS-LiClO4 with three different glycerol concentrations ...
Consult MoreAqueous electrochemical energy storage (EES) devices are highly safe, environmentally benign, and inexpensive, but their operating voltage and energy density must be increased if they are to efficiently …
Consult MoreAs a functional electrolyte in flexible energy storage and conversion devices, biopolymer-based hydrogels have received extensive attention in energy storage and conversion applications recently. The general features and molecular structures of the most commonly used biopolymers for the fabrication of various hydrogel electrolytes for …
Consult MoreWith the development of wearable electronics, flexible energy storage devices with high energy density, reliability, safety, and low cost are widely studied [60, 61]. Zinc-based batteries and supercapacitors (SCs) with high safety, good energy density, and low cost have gained widespread attention [ [62], [63], [64] ].
Consult More1 · A compatible PVA-based GG electrolyte was prepared similarly to test the compliance of the energy-storage device under mechanical deformation. LiClO 4 salt …
Consult MoreAlso, glycerol was chosen as a plasticizer and supramolecular crosslinker for the GPE due to its non-toxicity, biodegradability, low volatility, and total miscibility in water []. The system PVA-glycerol-NaCl is not new; it has been prepared in different ways [ 23, 24, 25 ] and has been proposed for several applications, from tissue engineering …
Consult MoreIn this work, plasticized polymer electrolyte films consisting of chitosan, ammonium nitrate (NH 4 NO 3) and glycerol for utilization in energy storage devices was …
Consult More1 Introduction Batteries and supercapacitors are playing critical roles in sustainable electrochemical energy storage (EES) applications, which become more important in recent years due to the ever-increasing global fossil energy crisis. [] As depicted in Figure 1, a battery or capacitor basically consists of cathode and anode that can …
Consult MoreThe development of aqueous Zn-based energy storage devices is severely restricted by uncontrollable Zn dendrite growth, serious parasitic side-reactions, and poor low-temperature performance. In this work, we introduce glycerol (Gl) with an appropriate concentration of 2.1 M (mol L −1 ) as a synergistic manipulator and desolvater in the 1 M …
Consult MoreFlexible energy storage devices represent a key technology for realizing wearable electronics, which have become a hot research topic.1,2 Although Li-ion batteries (LIBs) have domi-nated the power source market for portable electronics and electric vehicles
Consult Moresodium-conducting biopolymer blend electrolytes with glycerol plasticizer ... and their use for electrochemical energy storage devices has attracted a great deal of attention. Here, chitosan (CS ...
Consult MoreThe book contains selected and peer-reviewed papers presented during the ''International Workshop on Renewable Energy and Storage Devices for Sustainable Development'' (IWRESD-2021). The book covers recent research on various applications and scientific developments in the areas of renewable energy.
Consult MoreEnergy storage devices, such as those that power our mobile gadgets and computers, are almost ubiquitous in high-energy-consumption areas. In sophisticated chemical energy storage equipment, such as supercapacitors, solar cells, protonic, and fuel cells, polymer electrolyte (PE) is widely used ( Hadi et al., 2021 ).
Consult MoreGlycerol Material''s Impact on Growth of Microalgae for Sustainable Renewable Energy Production. In: Jain, V.K., Gomes, C., Verma, A. (eds) Renewable Energy and Storage Devices for Sustainable Development.
Consult MoreSupercapacitors are believed to be promising energy storage devices for the next generation owing to higher power density, fast charging capability, and stable …
Consult MoreThe electrochemical oxidation of glycerol (GOR) is a promising conversion technique to valorise glycerol and can thus also be referred to as an electroreforming reaction [7, 11] contrast to other techniques, such as …
Consult MoreFlexible energy storage devices represent a key technology for realizing wearable electronics, which have become a hot research topic.1,2 Although Li-ion batteries (LIBs) …
Consult MoreThe 1 H NMR characteristic peaks of the fatty acids esters were also shown in Fig. 3.There were no peaks of hydroxyl groups at about 4.48 ppm for glycerol.Moreover, the appearance of peaks related to the protons of –COO–CH– at 5.37 ppm and –COO–CH 2 – at δ=4.35 ppm for glycerol trimyristate, –COO–CH– at 5.20 ppm and –COO–CH 2 – at …
Consult MoreThe efficiency of the EDLC device was found to be above 85 % over the 1000 cycles. Because of its ease of fabrication, environmental friendliness, and high performance, the bio-based PBE could have additional potential usage in areas of flexible energy storage
Consult MoreFor flexible energy storage systems, a gel electrolyte is particularly appealing compared to liquid electrolytes because of the following benefits [84]: (1) A gel electrolyte can stop liquid ...
Consult MoreElectrolytes play an important part in the construction of energy devices. Several strategies have been developed to increase the conductivity of the electrolyte, particularly polymer blending, salt addition, and plasticiser used. In research conducted by Chai and Isa [], it was revealed that adding glycerol into CMC solution couldimproveionic conductivity and …
Consult MoreDownload : Download high-res image (158KB)Download : Download full-size imageA bi-benefits alkali-acid direct glycerol fuel cell (AA-DGFC) was established by combining alkaline glycerol oxidation in the anode, catalyzed by a specially designed FeCoNiCrMnS 2 /CC electrode, with acidic oxygen reduction in the cathode, catalyzed by …
Consult MoreThe flexible energy storage device can include a pair of electrodes separated by the gel electrolyte. The electrolytes can be in gel form, bendable and stretchable in a device. The gel electrolyte can include glycerol, redox-active molybdenum-containing ions, and a secondary ionic substance.
Consult MoreSuch high energy content of crude glycerol indicates its potential to be an effective carbon source for hydrogen, PD and ethanol bioproduction. The microorganisms involved in hydrogen production may be classified in four groups: strictly anaerobic, facultative anaerobic, aerobic and phototrophic [ 22 ], for example, green algae, …
Consult More1 Introduction Recently, wearable electronics with unique ductility, comfortability, and low-cost manufacturing process have sparked extensive applications in information engineering, energy storage/conversion, medical instruments, and national defense. [1-3] To satisfy the particular requirements of these devices, flexible power …
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