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成果及论文

以第一/通讯作者在Advanced MaterialsEnergy & Environmental ScienceACS NanoAdvanced Functional MaterialsAdvanced ScienceSmall等期刊发表SCI论文21,具体如下:


1)Shelf Life of Lithium-Sulfur Batteries Under Lean Electrolyte: Status and Challenges

 

Junling Guo‡*, Quan Yang ‡, Ying Dou, Xin Ba, Wei Wei and Jinping Liu*

 

Energy & Environmental Science, 2024, 17, 1695



2)Bi-Functional Materials for Sulfur Cathode and Lithium Metal Anode of Lithium-Sulfur Batteries: Status and Challenges


Ying Dou, Junling Guo*, Junke Shao, Jiaozi Duan, Huan Liang, Xing Cheng Yanbing He* and Jinping Liu*

 

Advanced Science, 2024, https://doi.org/10.1002/advs.202407304



3)Fe doping 1T phase MoS2 with enhanced zinc-ion storage ability and durability for high-performance aqueous zinc-ion batteries


Jing-Yi Liu, Rong-Jie Zhe, Zhan-Hong Peng, Yi-Hui Song, Lin-Xuan Yang, Chen Qing*, Jun-Ling Guo* and Jin-Ping Liu*


Rare metals, 2024, https://doi.org/10.1007/s12598-024-02963-8.



4)Carbon Dots-derived Three-dimensional Ordered Macroporous Host with High Penetrability and Catalytic Activity for Lithium-Sulfur Batteries under Lean Electrolyte


Jiao-Zi Duan, Hua-Yu Pei, Quan Yang, Xue Li, Xin Ba, Xue Yong, Jun-Ling Guo*, Si-Yu Lu*

 

Rare metals, 2024, 43, 2560-2573.



5)Scaly MoS2/rGO Composite as an Anode Material for High-Performance Potassium-Ion Battery


Bin Wang , Tao Deng, Jingjing Liu, Beibei Sun, Yun Su , Ruixia Ti, Lihua Shangguan , Chaoyang Zhang, Yu Tang, Na Cheng, Yan Xu* and Junling Guo* 


Molecules, 2024, 29, 2977.



6)Catalytic Hosts with Strong Adsorption Strength for Long Shelf-Life Lithium-Sulfur Batteries under Lean Electrolyte

 

Siyuan Zhao, Yang Quan, Kangli Liu, Yuanyuan Huang, Zhuo Wang, Guosheng Shao*, Jinping Liu* and Junling Guo*

 

Nano research2023, 16, 427–438  



7)Self-supporting Carbon Nanofibers with Ni-Single-Atoms and Uniformly Dispersed Ni-Nanoparticles as Scalable Multifunctional Hosts for High Energy Density Lithium Sulfur Batteries


Huayu Pei, Quan Yang, Jingkun Yu, Haoqiang Song, Siyuan Zhao,Geoffrey I.N. Waterhouse, Junling Guo* and Siyu Lu*

 

Small, 2022, 18,2202037



8Array-Structured Double-Ion Cooperative Adsorption Sites as Multifunctional Sulfur Hosts for Lithium–Sulfur Batteries with Low Electrolyte/Sulfur Ratio


Junling Guo, Yuanyuan Huang, Siyuan Zhao, Zixuan Li  Zixuan, Zhuo Wang*, Guosheng Shao*, and Jinping Liu*.

 

ACS Nano, 2021, 15:16322.



9Rational Designs for Lithium‐Sulfur Batteries with Low Electrolyte/Sulfur Ratio(高被引论文)
 
Junling Guo*, Huayu Pei, Ying Dou, Siyuan Zhao, Guosheng Shao* and Jinping Liu*.

 

Advanced Functional Materials: 2021, 31, 202010499.


 



10Facile Formation of a Solid Electrolyte Interface as a Smart Blocking Layer for High‐Stability Sulfur Cathode

 

Junling Guo, XinyuDu, Xiaolong Zhang, Fengxiang Zhang,* and Jinping Liu*.

 

Advanced Materials: 2017 , 29 ,1700273.

 


11Hierarchical, nitrogenous hollow carbonspheres filled with porous carbon nanosheets for use as efficient sulfur hosts for lithium-sulfur batteries

 

WeiliZhu, Da Lei, Yongpeng Li, Fengxiang Zhang* and Junling Guo*.

 

Journal of Alloys and Compounds: 2020, 836, 155295.

 

 

12Room-like”TiO2 Array as a Sulfur Host for Lithium-Sulfur Batteries: Combining Advantages of Array and Closed Structures

 

Junling Guo, Siyuan Zhao, Yonglong Shen*, Guosheng Shao*, and Fengxiang Zhang*.

 

ACS Sustainable Chemistry & Engineering: 2020,20, 7609–7616

 

 

13A heterostuctured Co3S4/MnS nanotube array as a catalytic sulfur host for lithium–sulfur batteries (高被引论文)

 

YongpengLi,Tianyi Jiang, He Yang, Da Lei, Xiaoyu Deng, Ce Hao, Fengxiang Zhang* and JunlingGuo*.

 

Electrochimica Acta: 2020,330, 135311.


 


 

14Li4Ti5O12 nanowire array as a sulfur host for high performance lithium sulfur battery

 

ShupengZhao, Yongpeng Li, Fengxiang Zhang* and JunlingGuo*.

 

Journal of Alloys and Compounds: 2019, 805, 873-879.

 

 

15 Electron Regulation Enabled Selective Lithium Deposition for Stable Anode of Lithium-Metal Batteries

 

Junling Guo,Shupeng Zhao, He Yang, Fengxiang Zhang* and Jinping Liu*.

 

Journal of Materials Chemistry A: 2019, 7, 2184-2191.

 

 

16A binder-free electrode architecture design for lithium–sulfur batteries: a review

 

Junling Guo and Jinping Liu*.

 

Nanoscale Advances: 2019, 1, 2104-2122

 

 

17Novel Synergistic Strategy for Developing High-Performance Lithium Sulfur Batteries of Large Areal Sulfur Loading by SEI Modified Separator

 

Junling Guo, Shupeng Zhao, Gaohong He, Fengxiang Zhang*.

 

ACS Applied Energy Materials: 2018, 1, 932-940

 


18A Mn3O4 Nano-wall Array Based Binder-free Cathode for High Performance Lithium–sulfur Batteries

 

Junling Guo, Xiaolong Zhang, Xinyu Du and Fengxiang Zhang*.

 

Journal of Materials Chemistry A: 2017, 5, 6447–6454.

 

 

19Core–Shell Structured o-LiMnO2@Li2CO3Nanosheet Array Cathode for High-Performance, Wide-Temperature-Tolerance Lithium-Ion Batteries

  

Junling Guo,Yingjun Cai, Suojiang Zhang,* Shimou Chen, and Fengxiang Zhang*.

 

ACS Applied materials & interfaces: 2016, 8, 16116-16124

 

 

20A Novel Li4Ti5O12-based High-PerformanceLithium Ion Electrode at Elevated Temperature

 

Junling Guo,Wenhua Zuo, Yingjun Cai, Shimou Chen, Suojiang Zhang* and Jinping Liu*.

 

Journal of Materials Chemistry A: 2015, 3, 4938-4944

 

 

21 Topotactic Conversion-Derived Carbon- and Binder-Free Li4Ti5O12-Rutile TiO2 Hybrid Nanowire Arrays for High-Performance Lithium Ion Full Cells

 

Junling Guo and Jinping Liu*.

 

RSC Advances: 2014, 4, 12950-12957