keyword
https://read.qxmd.com/read/38625161/identification-of-commercial-stainless-steel-mesh-size-for-electrochemical-oxygen-evolution-reaction
#21
JOURNAL ARTICLE
Yuda Prima Hardiantoa, Mostafa M Mohamed, Md Abdul Aziz, Zain H Yamani
The study examines the oxygen evolution reaction (OER) electrocatalytic efficiency of various stainless-steel mesh (SSM) sizes in electrolytic cells. Stainless steel is chosen due to its widespread availability and stability, making it an economically viable option. The primary objective of this investigation is to determine the optimal stainless-steel mesh size among those currently widely available on the market. The classification of stainless-steel mesh sizes as SS304 is confirmed by the minimal compositional variations observed across all mesh sizes through cyclic voltammetry (CV) and X-ray fluorescence (XRF) analyses...
April 16, 2024: Chemistry, An Asian Journal
https://read.qxmd.com/read/38624127/chemotactic-particles-as-strong-electrolytes-debye-h%C3%A3-ckel-approximation-and-effective-mobility-law
#22
JOURNAL ARTICLE
Pierre Illien, Ramin Golestanian
We consider a binary mixture of chemically active particles that produce or consume solute molecules and that interact with each other through the long-range concentration fields they generate. We analytically calculate the effective phoretic mobility of these particles when the mixture is submitted to a constant, external concentration gradient, at leading order in the overall concentration. Relying on an analogy with the modeling of strong electrolytes, we show that the effective phoretic mobility decays with the square root of the concentration: our result is, therefore, a nonequilibrium counterpart to the celebrated Kohlrausch and Debye-Hückel-Onsager conductivity laws for electrolytes, which are extended here to particles with long-range nonreciprocal interactions...
April 21, 2024: Journal of Chemical Physics
https://read.qxmd.com/read/38624124/range-and-sensitivity-of-17o-nuclear-spin-lattice-relaxation-as-a-probe-of-aqueous-electrolyte-dynamics
#23
JOURNAL ARTICLE
Chengtong Zhang, Alexej Jerschow
The study of electrolytic solutions is of relevance in many research fields, ranging from biophysics, materials, and colloid science to catalysis and electrochemistry. The dependence of solution dynamics on the nature of electrolytes and their concentrations has been the subject of many experimental and computational studies, yet it remains challenging to obtain a full understanding of the factors that govern solution behavior. Here, we provide additional insights into the behavior of aqueous solutions of alkali chlorides by combining 17O relaxation data with diffusion and viscosity data and contrast their behavior with 1H nuclear magnetic resonance relaxation data...
April 21, 2024: Journal of Chemical Physics
https://read.qxmd.com/read/38624089/non-fluorinated-ethers-to-mitigate-electrode-surface-reactivity-in-high-voltage-ncm811-li-batteries
#24
JOURNAL ARTICLE
Zhijie Wang, Xiangli Che, Danni Wang, Yanyan Wang, Xiaomei He, Ye Zhu, Biao Zhang
Lithium (Li) metal batteries (LMBs) with nickel (Ni)-rich layered oxide cathodes exhibit twice the energy density of conventional Li-ion batteries. However, their lifespan is limited by severe side reactions caused by high electrode reactivity. Fluorinated solvent-based electrolytes can address this challenge, but they pose environmental and biological hazards. This work reports on the molecular engineering of fluorine (F)-free ethers to mitigate electrode surface reactivity in high-voltage Ni-rich LMBs. By merely extending the alkyl chains of traditional ethers, we effectively reduce the catalytic reactivity of the cathode towards the electrolyte at high voltages, which suppresses the oxidation decomposition of the electrolyte, microstructural defects and rock-salt phase formation in the cathode, and gas release issues...
April 16, 2024: Angewandte Chemie
https://read.qxmd.com/read/38624087/ternary-rotational-polyanion-coupling-enables-fast-li-ion-dynamics-in-tetrafluoroborate-ion-doped-antiperovskite-li2ohcl-solid-electrolyte
#25
JOURNAL ARTICLE
Juncao Bian, Sifan Ling, Bei Deng, Haibin Lin, Ruo Zhao, Long Kong, Huimin Yuan, Jinlong Zhu, Songbai Han, Liping Wang, Ruiqin Zhang, Yusheng Zhao, Zhouguang Lu
Li-rich antiperovskite (LiRAP) hydroxyhalides are emerging as attractive solid electrolyte (SEs) for all-solid-state Li metal batteries (ASSLMBs) due to their low melting point, low cost, and ease of scaling-up. The incorporation of rotational polyanions can reduce the activation energy and thus improve the Li ion conductivity of SEs. Herein, we propose a ternary rotational polyanion coupling strategy to fasten the Li ion conduction in tetrafluoroborate (BF4-) ion doped LiRAP Li2OHCl. Assisted by first-principles calculation, powder X-ray diffraction, solid-state magnetic resonance and electrochemical impedance spectra, it is confirmed that Li ion transport in BF4- ion doped Li2OHCl is strongly associated with the rotational coupling among OH-, BF4- and Li2-O-H octahedrons, which enhances the Li ion conductivity for more than 1...
April 16, 2024: Angewandte Chemie
https://read.qxmd.com/read/38623970/ultrathin-mechanically-durable-and-scalable-polymer-in-salt-solid-electrolyte-for-high-rate-lithium-metal-batteries
#26
JOURNAL ARTICLE
Long Pan, Shengfa Feng, Hui Sun, Xiong Xiong Liu, Pengcheng Yuan, Mufan Cao, Min Gao, Yaping Wang, ZhengMing Sun
Polymer-in-salt solid-state electrolytes (PIS SSEs) are emerging for high room-temperature ionic conductivity and facile handling, but suffer from poor mechanical durability and large thickness. Here, Al2 O3 -coated PE (PE/AO) separators are proposed as robust and large-scale substrates to trim the thickness of PIS SSEs without compromising mechanical durability. Various characterizations unravel that introducing Al2 O3 coating on PE separators efficiently improves the wettability, thermal stability, and Li-dendrite resistance of PIS SSEs...
April 16, 2024: Small
https://read.qxmd.com/read/38623969/in-situ-formed-robust-solid-electrolyte-interphase-with-organic-inorganic-hybrid-layer-for-stable-zn-metal-anode
#27
JOURNAL ARTICLE
Congjian Lin, Tian Chen Li, Pinji Wang, Yongtai Xu, Dong-Sheng Li, Arlindo Sliva, Hui Ying Yang
Stabilizing the Zn anode/electrolyte interface is critical for advancing aqueous zinc ion storage technologies. Addressing this challenge helps minimize parasitic reactions and controls the formation of Zn dendrites, which is fundamental to achieving highly reversible Zn electrochemistry. In this study, 2% by volume of dimethyl sulfoxide (DMSO) is introduced into the baseline zinc sulfate (ZS) electrolyte, which acts as an efficient regulator to form a robust solid-electrolyte interphase (SEI) on the Zn anode...
April 16, 2024: Small Methods
https://read.qxmd.com/read/38623907/fine-tuning-electron-donor-capability-in-the-basic-anion-of-poly-ionic-liquid-frameworks-for-revolutionizing-catalytic-synthesis-of-ethyl-methyl-carbonate-with-both-ultrahigh-catalytic-activity-and-selectivity
#28
JOURNAL ARTICLE
Jie Chen, Huiyao Huang, Wangquan Gong, Yi Chen, Rong Dong, Limei Ren, Ting Qiu
Ethyl methyl carbonate (EMC) is a crucial solvent extensively utilized in lithium-ion battery electrolytes; the transesterification of dimethyl carbonate (DMC) with ethanol is a pivotal reaction for EMC production. However, this reaction faces challenges due to the trade-off between catalytic activity and selectivity from the basic catalysts. In this issue, we report an innovative strategy through fine-tuning the electron-donor capability of the basic phenolate anion ([PhO]) in a novel poly(ionic liquid) (PIL) framework, as synthesized via an alkylation reaction between 1,3,5-tris(bromomethyl)benzene, biphenyldiimidazole, and N , N '-carbonyldiimidazole (CDI) to trigger targeted basicity that can directionally catalyze the transesterification of DMC with ethanol, so as to achieve both ultrahigh catalytic activity and selectivity toward EMC...
April 16, 2024: Langmuir: the ACS Journal of Surfaces and Colloids
https://read.qxmd.com/read/38623904/li-5-5-ps-4-5-cl-1-5-based-all-solid-state-battery-with-a-silver-nanoparticle-modified-graphite-anode-for-improved-resistance-to-overcharging-and-increased-energy-density
#29
JOURNAL ARTICLE
Bo Pang, Tianqi Yang, Zhan Wu, Zuguang Li, Zheyu Jin, Wenkui Zhang, Yang Xia, Hui Huang, Xinping He, Yongping Gan, Xinhui Xia, Jun Zhang
All-solid-state lithium batteries (ASSLBs) are attracting tremendous attention due to their improved safety and higher energy density. However, the use of a metallic lithium anode poses a major challenge due to its low stability and processability. Instead, the graphite anode exhibits high reversibility for the insertion/deinsertion of lithium ions, giving ASSLBs excellent cyclic stability but a lower energy density. To increase the energy density of ASSLBs with the graphite anode, it is necessary to lower the negative/positive (N/P) capacity ratio and to increase the charging voltage...
April 16, 2024: ACS Applied Materials & Interfaces
https://read.qxmd.com/read/38623832/lignin-derived-ultra-thin-all-solid-polymer-electrolytes-with-three-dimensional-single-ion-nanofiber-ionic-bridge-framework-for-high-performance-lithium-batteries
#30
JOURNAL ARTICLE
Yuhan Liu, Pinhui Wang, Zhenyue Yang, Liying Wang, Zhangnan Li, Chengzhe Liu, Baijun Liu, Zhaoyan Sun, Hanwen Pei, Zhongyuan Lv, Wei Hu, Yunfeng Lu, Guangshan Zhu
Solid-state lithium batteries are promising candidates for the next generation high security and high performance batteries. Here, the lignin derived ultra-thin all-solid composite polymer electrolytes (CPEs) with a thickness of only 13.2 μm, which possessed three dimensional nanofiber ionic bridge networks composed of single-ion lignin based lithium (L-Li) and poly(vinylidene fluoride-co-hexafluoropropylene) (PVDF-HFP) as the framework, and poly(ethylene oxide)/lithium bis(trifluoromethanesulfonyl)imide (PEO/LiTFSI) as the filler, was obtained through electrospinning/spraying and hot-pressing process...
April 16, 2024: Advanced Materials
https://read.qxmd.com/read/38623821/energy-harnessing-and-storage-from-surface-switching-with-a-ferroelectric-electrolyte
#31
JOURNAL ARTICLE
Maria Helena Braga
In the quest for innovative energy solutions suitable for mobile, stationary and digital applications, ferroelectric topological insulators (FETIs)1 emerge as promising candidates. These materials combine topologically protected states with spontaneous and switchable polarization. This study reveals emergent phenomena in FETI-electrolytes through experiments and simulations, specifically in the A3-2 x Ba x ClO family (where A = Li, Na or K, and x = 0 or 0.005). Here, it is shown that surface oscillations of the potential ( V ), temperature, and mass may synchronize with the bulk's oscillations, and be harnessed and stored in the form of electrical energy either in a sole FETI or in a battery-type cell presenting a panoply of applications from wireless batteries to transistors, memories, sensors, and selective catalysts...
April 16, 2024: Chemical Communications: Chem Comm
https://read.qxmd.com/read/38623342/metal-chloride-cathodes-for-next-generation-rechargeable-lithium-batteries
#32
REVIEW
Yiming Dai, Shuoqing Zhang, Jiayun Wen, Zhenyou Song, Tengrui Wang, Renyuan Zhang, Xiulin Fan, Wei Luo
Rechargeable lithium-ion batteries (LIBs) have prospered a rechargeable world, predominantly relying on various metal oxide cathode materials for their abilities to reversibly de-/intercalate lithium-ion, while also serving as lithium sources for batteries. Despite the success of metal oxide, issues including low energy density have raised doubts about their suitability for next-generation lithium batteries. This has sparked interest in metal chlorides, a neglected cathode material family. Metal chlorides show promise with factors like energy density, diffusion coefficient, and compressibility...
April 19, 2024: IScience
https://read.qxmd.com/read/38623338/enhanced-electrocatalytic-performance-for-h-2-o-2-generation-by-boron-doped-porous-carbon-hollow-spheres
#33
JOURNAL ARTICLE
Zhaohui Wang, Zehan Sun, Kun Li, Keyi Fan, Tian Tian, Haomin Jiang, Honglei Jin, Ang Li, Yang Tang, Yanzhi Sun, Pingyu Wan, Yongmei Chen
Electrocatalytic generation of H2 O2 via the 2-electron pathway of oxygen reduction reaction (2e-ORR) is an attractive technology compared to the anthraquinone process due to convenience and environmental friendliness. However, catalysts with excellent selectivity and high activity for 2e-ORR are necessary for practical applications. Reported here is a catalyst comprising boron-doped porous carbon hollow spheres (B-PCHSs) prepared using the hard template method coupled with borate transesterification. In an alkali electrolyte, the selectivity of B-PCHS for 2e-ORR above 90% in range of 0...
April 19, 2024: IScience
https://read.qxmd.com/read/38623226/effect-of-grayscale-threshold-on-x-ray-computed-tomography-reconstruction-of-gas-diffusion-layers-in-polymer-electrolyte-membrane-fuel-cells
#34
JOURNAL ARTICLE
Huarui Li, Tingqiang Qiao, Xiaoyu Ding
In X-ray computed tomography (CT) reconstructions of gas diffusion layers (GDLs), grayscale threshold selection is a critical issue. Although various selection methods exist, they all have their own drawbacks. This study investigates the influence of grayscale threshold on GDL properties and compares Otsu and porosity-adaptive thresholds. We utilized X-ray CT to reconstruct a Toray carbon paper sample (TGP-H-060) at a resolution of 2 μm. Using reconstructed 3D models generated under different grayscale thresholds, we performed structural analysis, computational fluid dynamics simulation, and compression simulation...
April 15, 2024: Heliyon
https://read.qxmd.com/read/38622784/breaking-highly-ordered-ptpbbi-intermetallic-with-disordered-amorphous-phase-for-boosting-electrocatalytic-hydrogen-evolution-and-alcohol-oxidation
#35
JOURNAL ARTICLE
Fukai Feng, Chaoqun Ma, Sumei Han, Xiao Ma, Caihong He, Huaifang Zhang, Wenbin Cao, Xiangmin Meng, Jing Xia, Lijie Zhu, Yahui Tian, Qi Wang, Qinbai Yun, Qipeng Lu
Constructing amorphous/intermetallic (A/IMC) heterophase structures by breaking the highly ordered IMC phase with disordered amorphous phase is an effective way to improve the electrocatalytic performance of noble metal-based IMC electrocatalysts because of the optimized electronic structure and abundant heterophase boundaries as active sites. In this study, we report the synthesis of ultrathin A/IMC PtPbBi nanosheets (NSs) for boosting hydrogen evolution reaction (HER) and alcohol oxidation reactions. The resulting A/IMC PtPbBi NSs exhibit a remarkably low overpotential of only 25 mV at 10 mA cm-2 for the HER in an acidic electrolyte, together with outstanding stability for 100 h...
April 15, 2024: Angewandte Chemie
https://read.qxmd.com/read/38622681/polymorphic-ventricular-tachycardia-and-cardiac-arrest-from-abiraterone-induced-hypokalemia-a-case-report
#36
JOURNAL ARTICLE
Jessica Mao, Allison Komatsu Chang, Stephen Chin, Komal Preet, Nare Torosyan, Sarmen Sarkissian, Joseph Ebinger
BACKGROUND: Polymorphic ventricular tachycardia (PMVT) is an unstable and often fatal cardiac tachyarrhythmia. While there are many causes of this rhythm, including electrolyte imbalances, ischemia, and genetic disorders, iatrogenic etiologies are important to recognize. Abiraterone is an androgen synthesis antagonist effective in treating prostate cancer, but here we describe a case of severe hypokalemia secondary to abiraterone resulting in polymorphic ventricular tachycardia and cardiac arrest...
April 16, 2024: Journal of Medical Case Reports
https://read.qxmd.com/read/38622498/sites-and-mobility-of-lithium-along-the-li-1-x-ti-2-x-in-x-po-4-3-0-%C3%A2-x-%C3%A2-2-series-deduced-by-xrd-nmr-and-impedance-spectroscopy
#37
JOURNAL ARTICLE
Radhouene Kahlaoui, Kamel Arbi, Isabel Sobrados, Ricardo Jimenez, Riadh Ternane, Jesus Sanz
The structure and Li conductivity has been investigated in the Li1+ x Ti2- x In x (PO4 )3 (0 ≤ x ≤ 2) series prepared by the ceramic route at 900 °C. The XRD patterns of 0 ≤ x ≤ 0.2 samples show the presence of rhombohedral (S.G. R 3̅ c ); those of 0.2 ≤ x ≤ 1 samples display both rhombohedral and orthorhombic (S.G. Pbca ), and 1 ≤ x ≤ 2 samples exhibit only monoclinic (S.G. P 21 / n ) phases. At intermediate compositions, the secondary LiTiPO5 phase was detected...
April 15, 2024: Inorganic Chemistry
https://read.qxmd.com/read/38622167/chlorine-bridge-bond-enabled-binuclear-copper-complex-for-electrocatalyzing-lithium-sulfur-reactions
#38
JOURNAL ARTICLE
Qin Yang, Jinyan Cai, Guanwu Li, Runhua Gao, Zhiyuan Han, Jingjing Han, Dong Liu, Lixian Song, Zixiong Shi, Dong Wang, Gongming Wang, Weitao Zheng, Guangmin Zhou, Yingze Song
Engineering atom-scale sites are crucial to the mitigation of polysulfide shuttle, promotion of sulfur redox, and regulation of lithium deposition in lithium-sulfur batteries. Herein, a homonuclear copper dual-atom catalyst with a proximal distance of 3.5 Å is developed for lithium-sulfur batteries, wherein two adjacent copper atoms are linked by a pair of symmetrical chlorine bridge bonds. Benefiting from the proximal copper atoms and their unique coordination, the copper dual-atom catalyst with the increased active interface concentration synchronously guide the evolutions of sulfur and lithium species...
April 15, 2024: Nature Communications
https://read.qxmd.com/read/38622141/hybridizing-carbonate-and-ether-at-molecular-scales-for-high-energy-and-high-safety-lithium-metal-batteries
#39
JOURNAL ARTICLE
Jiawei Chen, Daoming Zhang, Lei Zhu, Mingzhu Liu, Tianle Zheng, Jie Xu, Jun Li, Fei Wang, Yonggang Wang, Xiaoli Dong, Yongyao Xia
Commonly-used ether and carbonate electrolytes show distinct advantages in active lithium-metal anode and high-voltage cathode, respectively. While these complementary characteristics hold promise for energy-dense lithium metal batteries, such synergy cannot be realized solely through physical blending. Herein, a linear functionalized solvent, bis(2-methoxyethyl) carbonate (BMC), is conceived by intramolecularly hybridizing ethers and carbonates. The integration of the electron-donating ether group with the electron-withdrawing carbonate group can rationalizes the charge distribution, imparting BMC with notable oxidative/reductive stability and relatively weak solvation ability...
April 15, 2024: Nature Communications
https://read.qxmd.com/read/38621413/mechanisms-of-biological-effects-of-ionic-liquids-from-single-cells-to-multicellular-organisms
#40
REVIEW
Ksenia S Egorova, Alexey V Kibardin, Alexandra V Posvyatenko, Valentine P Ananikov
The review presents a detailed discussion of the evolving field studying interactions between ionic liquids (ILs) and biological systems. Originating from molten salt electrolytes to present multiapplication substances, ILs have found usage across various fields due to their exceptional physicochemical properties, including excellent tunability. However, their interactions with biological systems and potential influence on living organisms remain largely unexplored. This review examines the cytotoxic effects of ILs on cell cultures, biomolecules, and vertebrate and invertebrate organisms...
April 15, 2024: Chemical Reviews
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