Author: Xinlu Zhang

triggering-digital-microenvironment-of-odd-nitrogen-bridged-atomic-iron-coordinated-with-in-plane-nitrogen-by-means-of-manipulating-phase-reconfigured-2d-vanadium-nitride-mxene-towards-invigorated-lithium-sulfur-batteries

Triggering digital microenvironment of odd nitrogen-bridged atomic iron coordinated with in-plane nitrogen by means of manipulating phase-reconfigured 2D vanadium nitride MXene towards invigorated lithium-sulfur batteries

Energy Environ. Sci., 2024, Accepted ManuscriptDOI: 10.1039/D4EE02979H, PaperXinlu Zhang, Xuexiu Bai, Chuanliang Wei, Zhengran Wang, Baojuan Xi, Shenglin Xiong, Jinkui FengComprehending electronic configurations of single-atom catalyst (SACs) by fine-tuning coordination microenvironment reinforcing electrocatalytic activity for rechargeable lithium-sulfur batteries is of noteworthy significance toward boosting sulfur

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Triggering digital microenvironment of atypical nitrogen-bridged atomic iron coordinated with in-plane nitrogen by way of manipulating phase-reconfigured 2D vanadium nitride MXene towards invigorated lithium-sulfur batteries

Energy Environ. Sci., 2024, Accepted ManuscriptDOI: 10.1039/D4EE02979H, PaperXinlu Zhang, Xuexiu Bai, Chuanliang Wei, Zhengran Wang, Baojuan Xi, Shenglin Xiong, Jinkui FengComprehending electronic configurations of single-atom catalyst (SACs) by fine-tuning coordination microenvironment reinforcing electrocatalytic activity for rechargeable lithium-sulfur batteries is of noteworthy significance toward boosting sulfur

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