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Dive into the research topics where Yaolin Xu is active.

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Featured researches published by Yaolin Xu.


Chemistry of Materials | 2017

Understanding the Electrochemical Formation and Decomposition of Li2O2 and LiOH with Operando X-ray Diffraction

Zhaolong Li; Swapna Ganapathy; Yaolin Xu; J.R. Heringa; Quanyao Zhu; Wen Chen; Marnix Wagemaker

The lithium air, or Li–O2, battery system is a promising electrochemical energy storage system because of its very high theoretical specific energy, as required by automotive applications. Fundamental research has resulted in much progress in mitigating detrimental (electro)chemical processes; however, the detailed structural evolution of the crystalline Li2O2 and LiOH discharge products, held at least partially responsible for the limited reversibility and poor rate performance, is hard to measure operando under realistic electrochemical conditions. This study uses Rietveld refinement of operando X-ray diffraction data during a complete discharge–charge cycle to reveal the detailed structural evolution of Li2O2 and LiOH crystallites in 1,2-dimethoxyethane (DME) and DME/LiI electrolytes, respectively. The anisotropic broadened reflections confirm and quantify the platelet crystallite shape of Li2O2 and LiOH and show how the average crystallite shape evolves during discharge and charge. Li2O2 is shown to form via a nucleation and growth mechanism, whereas the decomposition appears to start at the smallest Li2O2 crystallite sizes because of their larger exposed surface. In the presence of LiI, platelet LiOH crystallites are formed by a particle-by-particle nucleation and growth process, and at the end of discharge, H2O depletion is suggested to result in substoichiometric Li(OH)1–x, which appears to be preferentially decomposed during charging. Operando X-ray diffraction proves the cyclic formation and decomposition of the LiOH crystallites in the presence of LiI over multiple cycles, and the structural evolution provides key information for understanding and improving these highly relevant electrochemical systems.


Advanced Energy Materials | 2016

Reversible Na‐Ion Uptake in Si Nanoparticles

Yaolin Xu; Ellie Swaans; Shibabrata Basak; H.W. Zandbergen; Dana M. Borsa; Fokko M. Mulder


Energy Storage Materials | 2018

Honeycomb-like porous 3D nickel electrodeposition for stable Li and Na metal anodes

Yaolin Xu; Ashok Sreekumar Menon; Peter Paul R. M. L. Harks; Dorothee Christine Hermes; Lucas A. Haverkate; Sandeep Unnikrishnan; Fokko M. Mulder


Advanced Energy Materials | 2018

A High-Rate and Ultrastable Sodium Ion Anode Based on a Novel Sn4P3-P@Graphene Nanocomposite

Yaolin Xu; Bo Peng; Fokko M. Mulder


Science China-physics Mechanics & Astronomy | 2017

The electrochemical performance of super P carbon black in reversible Li/Na ion uptake

Bo Peng; Yaolin Xu; Xiaoqun Wang; Xinghua Shi; Fokko M. Mulder


Nano Energy | 2017

A high-performance Li-ion anode from direct deposition of Si nanoparticles

Yaolin Xu; Ellie Swaans; Sibo Chen; Shibabrata Basak; Peter Paul R. M. L. Harks; Bo Peng; H.W. Zandbergen; Dana M. Borsa; Fokko M. Mulder


ChemElectroChem | 2017

High-Performance and Low-Cost Sodium-Ion Anode Based on a Facile Black Phosphorus-Carbon Nanocomposite

Bo Peng; Yaolin Xu; Kai Liu; Xiaoqun Wang; Fokko M. Mulder


Advanced Energy Materials | 2018

Fe2O3 Nanoparticle Seed Catalysts Enhance Cyclability on Deep (Dis)charge in Aprotic LiO2 Batteries

Zhaolong Li; Swapna Ganapathy; Yaolin Xu; Quanyao Zhu; Wen Chen; Ivan R. Kochetkov; Chandramohan George; Linda F. Nazar; Marnix Wagemaker


International Journal of Hydrogen Energy | 2018

TiF3 catalyzed MgH2 as a Li/Na ion battery anode

Yaolin Xu; Fokko M. Mulder


ChemElectroChem | 2017

Cover Feature: High-Performance and Low-Cost Sodium-Ion Anode Based on a Facile Black Phosphorus−Carbon Nanocomposite (ChemElectroChem 9/2017)

Bo Peng; Yaolin Xu; Kai Liu; Xiaoqun Wang; Fokko M. Mulder

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Fokko M. Mulder

Delft University of Technology

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Bo Peng

Renmin University of China

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Xiaoqun Wang

Renmin University of China

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H.W. Zandbergen

Delft University of Technology

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Marnix Wagemaker

Delft University of Technology

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Shibabrata Basak

Delft University of Technology

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Swapna Ganapathy

Delft University of Technology

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Zhaolong Li

Delft University of Technology

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Kai Liu

Renmin University of China

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