Li Dai's research while affiliated with Liaocheng Teachers University and other places

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Publications (3)


Pillaring Behavior of Organic Molecules on MXene: Insights from Molecular Dynamics Simulations
  • Article

October 2023

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9 Reads

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3 Citations

Langmuir

Xiangcui Qiu

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Li Dai

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Haibo Li

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[...]

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Rui Li
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Understanding the tunable sodium storage performance in pillared MXene: A first-principles study

November 2022

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9 Reads

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2 Citations

Physical Chemistry Chemical Physics

Pillared MXenes with large interlayer spacing have shown great potential as an anode material for sodium-ion batteries (SIBs). To better understand the underlying mechanism of the pillar effect in enhancing the electrochemical performance, first-principles calculations were used to investigate the adsorption and diffusion of Na in MXenes (Ti2CO2 and Ti3C2O2), as well as the mechanical properties of the system under different MXenes layer spacings. The results showed that when the MXene layer spacing was ∼4 Å, the strongest adsorption of Na on MXenes was achieved due to the interlayer synergy effect. However, when the MXene layer spacing was greater than 5 Å, double Na-atomic layer adsorption would be formed, which increased the Na storage capacity. Interestingly, the diffusion of Na was not only affected by the interlayer spacing of MXenes, but also by the interlayer stacking mode of MXenes. Moreover, it was found that when the MXene layer spacing was more than 8 Å, the sodium storage properties basically did not change significantly. The optimal layer spacing for Ti2CO2 and Ti3C2O2 was predicted to be 7 and 6 Å, respectively. This work provides valuable theoretical guidance for developing high-performance anode materials for SIBs.


Enhanced HER catalysis based on MXene/N-doped graphene heterostructures: A first-principles study

April 2022

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18 Reads

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15 Citations

International Journal of Hydrogen Energy

Based on the first-principles density functional theory, we investigated the structural and electronic properties and hydrogen evolution reaction (HER) activity of the heterostructures composed of different MXene and N-doped graphene (NDG). Our results show noticeable electron transfer occurring between the interfaces of the heterostructure, and the addition of MXene modifies the electronic structure of the NDG surface. Furthermore, it was observed that the heterostructure enhanced the adsorption of H on NDG surface and improved HER activity. The effects of heterostructure types and H coverage rate on HER activity were also investigated. This study suggests that appropriate design of MXene/NDG heterostructure can make it a potential HER catalyst.

Citations (2)


... Through the calculation of Na adsorption energy ( Figure 7A), the adsorption energy was found to be only 4.40 eV, and combined with the results of density of states simulation of Ti 3 C 2 before and after Na adsorption, the diffusion barrier of Na + was 0.096 eV ( Figure 7B), which indicated that Ti 3 C 2 is a promising anode material for sodium-ion batteries. The basic mechanism for the MXene column effect to enhance the electrode performance of sodium-ion batteries is still unclear; based on this, Dai et al. [54] investigated the effects of different MXene interlayer stacking methods on the adsorption, diffusion and mechanical properties of Na atoms by employing the first nature principle with two typical MXenes as the research objects. It was found that for both Ti 3 C 2 O 2 and Ti 2 CO 2 configurations, the diffusion energy barriers of Na were greatly reduced when the C-Ti stacking mode was adopted ( Figure 7C,D). ...

Reference:

Design and Synthesis Strategy of MXenes-Based Anode Materials for Sodium-Ion Batteries and Progress of First-Principles Research
Understanding the tunable sodium storage performance in pillared MXene: A first-principles study
  • Citing Article
  • November 2022

Physical Chemistry Chemical Physics

... However, regarding HER, weak interactions between the carbon atoms of graphene and adsorbed hydrogen (H) atoms hinder C-H bond formation, making hydrogen generation difficult. Various strategies have been employed to enhance C-H bonds in graphene, including creating vacancies, introducing impurities, and constructing heterostructures with other 2D materials, increasing active sites for HER [14][15][16][17]. Single-atom doping offers diverse possibilities in catalysis by enabling the selection of dopant species and doping manners. ...

Enhanced HER catalysis based on MXene/N-doped graphene heterostructures: A first-principles study
  • Citing Article
  • April 2022

International Journal of Hydrogen Energy