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reaching-solid-lithium-steel-anodes-by-means-of-the-synergistic-of-electrostatic-shielding-and-top-li+-flux-inorganic-interphase

Reaching Solid Lithium Steel Anodes by means of the Synergistic of Electrostatic Shielding and Top Li+ Flux Inorganic Interphase

Energy Environ. Sci., 2024, Accepted ManuscriptDOI: 10.1039/D4EE00399C, PaperJiangtao Yu, Xinyu Ma, Xiuyang Zou, Yin Hu, Mingchen Yang, Jinhua Yang, Shipeng Sun, Feng YanUncontrolled dendrite growth and slow Li+ transport kinetics on the anode/electrolyte interface severely restricted the practical process of lithium metal batteries (LMBs). Here,

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the-acupuncture-impact-of-carbon-nanotubes-precipitated-via-the-quantity-enlargement-of-silicon-based-anodes

The acupuncture impact of carbon nanotubes precipitated via the quantity enlargement of silicon-based anodes

Energy Environ. Sci., 2024, 17,3358-3364DOI: 10.1039/D4EE00710G, PaperZiying He, Chenxi Zhang, Yukang Zhu, Fei WeiThe acupuncture effect of CNTs induced by the volume expansion of silicon-based anodes: neither the SEI nor the carbon coating can withstand the GPa-level compressive stress on CNTs.The content of this RSS

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activating-lattice-oxygen-in-accordance-with-power-band-engineering-in-oxides-for-business-water/saline-oxidation

Activating lattice oxygen in accordance with power band engineering in oxides for business water/saline oxidation

Energy Environ. Sci., 2024, 17,3347-3357DOI: 10.1039/D4EE00214H, PaperYijie Zhang, Weiyi Zhang, Xiaowen Zhang, Xin Wang, Jiajun Wang, Qiang Zhao, Yuhan Sun, Jinping Li, Guang Liu, Xiaopeng HanThe oxide energy bands are adjusted by introducing Fe and F ions, thereby activating lattice oxygen for superior electrocatalytic performance.The

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decoding-the-top-overpotential-of-the-oxygen-aid-response-by-way-of-comprehensively-elucidating-the-open-circuit-doable

Decoding the top overpotential of the oxygen aid response by way of comprehensively elucidating the open circuit doable

Energy Environ. Sci., 2024, 17,3338-3346DOI: 10.1039/D3EE04368A, PaperZenan Wu, Guangxing Yang, Qiao Zhang, Zhiting Liu, Feng PengThe reduction peak potential of Pt-based catalysts during cathodic scans emerges as a novel indicator for predicting ORR performance, proposing a strategy to enhance the OCP and reduce the overpotential

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