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Dive into the research topics where Xiaojing Bai is active.

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Featured researches published by Xiaojing Bai.


Nature Communications | 2017

Rare earth separations by selective borate crystallization

Xuemiao Yin; Yaxing Wang; Xiaojing Bai; Yumin Wang; Lanhua Chen; Chengliang Xiao; Juan Diwu; Shiyu Du; Zhifang Chai; Thomas E. Albrecht-Schmitt; Shuao Wang

Lanthanides possess similar chemical properties rendering their separation from one another a challenge of fundamental chemical and global importance given their incorporation into many advanced technologies. New separation strategies combining green chemistry with low cost and high efficiency remain highly desirable. We demonstrate that the subtle bonding differences among trivalent lanthanides can be amplified during the crystallization of borates, providing chemical recognition of specific lanthanides that originates from Ln3+ coordination alterations, borate polymerization diversity and soft ligand coordination selectivity. Six distinct phases are obtained under identical reaction conditions across lanthanide series, further leading to an efficient and cost-effective separation strategy via selective crystallization. As proof of concept, Nd/Sm and Nd/Dy are used as binary models to demonstrate solid/aqueous and solid/solid separation processes. Controlling the reaction kinetics gives rise to enhanced separation efficiency of Nd/Sm system and a one-step quantitative separation of Nd/Dy with the aid of selective density-based flotation.


Journal of Chemical Physics | 2015

New insight into the helium-induced damage in MAX phase Ti3AlC2 by first-principles studies

Yiguo Xu; Xiaojing Bai; Xianhu Zha; Qing Huang; Jian He; Kan Luo; Yuhong Zhou; Timothy C. Germann; Joseph S. Francisco; Shiyu Du

In the present work, the behavior of He in the MAX phase Ti3AlC2 material is investigated using first-principle methods. It is found that, according to the predicted formation energies, a single He atom favors residing near the Al plane in Ti3AlC2. The results also show that Al vacancies are better able to trap He atoms than either Ti or C vacancies. The formation energies for the secondary vacancy defects near an Al vacancy or a C vacancy are strongly influenced by He impurity content. According to the present results, the existence of trapped He atoms in primary Al vacancy can promote secondary vacancy formation and the He bubble trapped by Al vacancies has a higher tendency to grow in the Al plane of Ti3AlC2. The diffusion of He in Ti3AlC2 is also investigated. The energy barriers are approximately 2.980 eV and 0.294 eV along the c-axis and in the ab plane, respectively, which means that He atoms exhibit faster migration parallel to the Al plane. Hence, the formation of platelet-like bubbles nucleated from the Al vacancies is favored both energetically and kinetically. Our calculations also show that the conventional spherical bubbles may be originated from He atoms trapped by C vacancies. Taken together, these results are able to explain the observed formation of bubbles in various shapes in recent experiments. This study is expected to provide new insight into the behaviors of MAX phases under irradiation from electronic structure level in order to improve the design of MAX phase based materials.


Journal of Physical Chemistry B | 2018

Grand Canonical Monte Carlo Simulations on Phase Equilibria of Methane, Carbon Dioxide, and Their Mixture Hydrates

Nianxiang Qiu; Xiaojing Bai; Ningru Sun; Xiaohui Yu; Longbin Yang; Yanjun Li; Minghui Yang; Qing Huang; Shiyu Du

The cage occupancy plays a crucial role in the thermodynamic stability of clathrate hydrates and is an important quantity for understanding the CO2-CH4 replacement phenomenon. In this work, the occupancy isotherms of pure CH4, pure CO2, and their mixture in sI and sII hydrates are studied by GCMC + MD simulations. The adsorption of CH4 and CO2 + CH4 in the sI and sII hydrates can be categorized as the one-site Langmuir type. The calculated occupancy ratio θL/θS and the abundance ratio of CO2 to CH4 vary with the temperature and pressure, which provide the prerequisite information for the prediction of CH4 recovery yield at different conditions in the CO2-CH4 gas exchange process. The phase equilibria of clathrate hydrates of pure gases and mixtures are explored and the corresponding heat of dissociation and hydration numbers are determined. The current investigation provides new perspectives to understand the mechanism behind the gas adsorption behavior of clathrate hydrates.


Physics Letters A | 2016

Negative differential resistance and rectifying performance induced by doped graphene nanoribbons p–n device

Yuhong Zhou; Nianxiang Qiu; Runwei Li; Zhansheng Guo; Jian Zhang; Junfeng Fang; Aisheng Huang; Jian He; Xianhu Zha; Kan Luo; Jingshuo Yin; Qiuwu Li; Xiaojing Bai; Qing Huang; Shiyu Du


Journal of Physical Chemistry C | 2016

Electronic and Transport Properties of Ti2CO2 MXene Nanoribbons

Yuhong Zhou; Kan Luo; Xianhu Zha; Zhen Liu; Xiaojing Bai; Qing Huang; Zhansheng Guo; Cheng-Te Lin; Shiyu Du


Inorganic Chemistry | 2015

Uranyl Carboxyphosphonates Derived from Hydrothermal in Situ Ligand Reaction: Syntheses, Structures, and Computational Investigations

Dai Wu; Xiaojing Bai; Hong-Rui Tian; Weiting Yang; Zewen Li; Qing Huang; Shiyu Du; Zhong-Ming Sun


Fuel | 2019

Viscosity temperature properties from molecular dynamics simulation: The role of calcium oxide, sodium oxide and ferrous oxide

Xin Dai; Jin Bai; Qing Huang; Zhen Liu; Xiaojing Bai; Ronggen Cao; Xiao-Dong Wen; Wen Li; Shiyu Du


Nanoscale | 2018

Bipolar magnetic semiconductors among intermediate states during the conversion from Sc2C(OH)2 to Sc2CO2 MXene

Xianhu Zha; Ji-Chang Ren; Li Feng; Xiaojing Bai; Kan Luo; Yaqing Zhang; Jian He; Qing Huang; Joseph S. Francisco; Shiyu Du


Journal of Physical Chemistry C | 2018

Adsorption Behaviors and Phase Equilibria for Clathrate Hydrates of Sulfur- and Nitrogen-Containing Small Molecules

Nianxiang Qiu; Xiaojing Bai; Jiaqi Xu; Ningru Sun; Joseph S. Francisco; Minghui Yang; Qing Huang; Shiyu Du


Fuel | 2018

Coal ash fusion properties from molecular dynamics simulation: the role of calcium oxide

Xin Dai; Jin Bai; Qing Huang; Zhen Liu; Xiaojing Bai; Cheng-Te Lin; Wen Li; Wenping Guo; Xiao-Dong Wen; Shiyu Du

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Shiyu Du

Chinese Academy of Sciences

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Qing Huang

Chinese Academy of Sciences

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Kan Luo

Chinese Academy of Sciences

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Xianhu Zha

Chinese Academy of Sciences

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Nianxiang Qiu

Chinese Academy of Sciences

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Yuhong Zhou

Chinese Academy of Sciences

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Jian He

Shanghai Jiao Tong University

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Zhen Liu

Chinese Academy of Sciences

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Cheng-Te Lin

Chinese Academy of Sciences

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