Search Results - "Xu, Leidong"
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Harnessing structural stochasticity in the computational discovery and design of microstructures
Published in Materials & design (01-11-2022)“…[Display omitted] •Proposed a property-aware deep generative model to provide a unified design space for stochastic and periodic (deterministic)…”
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1D thermal characterization of micro/nano-cantilevers for Suspended ThermoReflectance measurements
Published in AIP advances (01-08-2019)“…Creating micro/nanoscale systems with one dimension substantially larger than the others is relatively straightforward, and convenient for studying thermal…”
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Bioinspired Hierarchical Porous Architecture for Enhanced Kinetics and Mechanical Integrity in Thick Cathode
Published in Small (Weinheim an der Bergstrasse, Germany) (22-10-2024)“…Increasing the thickness of the electrodes is considered the primary strategy to elevate battery energy density. However, as the thickness increases, rate…”
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Unlocking Failure Mechanisms and Improvement of Practical Li–S Pouch Cells through In Operando Pressure Study
Published in Advanced energy materials (01-02-2022)“…For lithium–sulfur battery commercialization, research at a pouch cell level is essential, as some problems that can be ignored or deemed minimal at a smaller…”
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Unlocking Failure Mechanisms and Improvement of Practical Li–S Pouch Cells through In Operando Pressure Study
Published in Advanced energy materials (07-12-2021)“…For Lithium-sulfur (Li-S) battery commercialization, the study at a pouch cell level is essential, as some problems ignored or deemed minimal at the smaller…”
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Unlocking Failure Mechanisms and Improvement of Practical Li–S Pouch Cells through In Operando Pressure Study (Adv. Energy Mater. 7/2022)
Published in Advanced energy materials (01-02-2022)“…Li–S Batteries In article number 2103048, Bin Li and co‐workers report the results of an operando pressure study on a practical Li–S pouch cell, which reveals…”
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Acceleration of the Power Method with Dynamic Mode Decomposition
Published 20-04-2019“…Presented is an algorithm based on dynamic mode decomposition (DMD) for acceleration of the power method (PM). The power method is a simple technique for…”
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