论文著作:
1. Shuquan Liang* et al. Surface-Preferred Crystal Plane for a Stable and Reversible Zinc Anode. Advanced Materials, 2021, 2100187. DOI: 10.1002/adma.202100187.
2. Shuquan Liang* et al. Solvent Molecule Cooperation Enhancing Lithium Metal Battery Performance at Both Electrodes. Angewandte Chemie International Edition 59 (2020): 7797-7802.
3. Shuquan Liang* et al. Fundamentals and perspectives in developing zinc-ion battery electrolytes: A comprehensive review. Energy & Environmental Science, 2020, 13, 4625.
4. Shuquan Liang* et al. Issues and Opportunities Facing Aqueous Zinc-ion Batteries. Energy & Environmental Science, 12 (2019) 3288-3304. (高被引论文)
5. Shuquan Liang* et al. Li+ Ions Intercalated V2O5•nH2O with Enlarged Layered Spacing and Fast Ions Diffusion as Aqueous Zinc Ion Battery Cathode. Energy & Environmental Science. DOI: 10.1039/C8EE01651H. (高被引论文)
6. Shuquan Liang* et al. Synthesis of Mo2N Nanolayer Coated MoO2 Hollow Nanostructures as High-Performance Anode Materials for Lithium-Ion Batteries. Energy & Environmental Science. 6, 2013, 2691.
7. Shuquan Liang et al. Chemical Synthesis of 3D Graphene‐Like Cages for Sodium‐Ion Batteries Applications. Advanced Energy Materials, 2017, 1700797.
8. Shuquan Liang et al. Uniform 8LiFePO4·Li3V2(PO4)3/C Nanoflakes for High-Performance Li-Ion Batteries. Nano Energy, 22, 2016, 48-58.
9. Shuquan Liang* et al. Mechanistic Insights of Zn2+ Storage in Sodium Vanadates. Advanced Energy Materials. 2018, 1801819. (高被引论文)
10. Shuquan Liang* et al. Observation of Pseudocapacitive Effect and Fast Ion Diffusion in Bimetallic Sulfides as an Advanced Sodium Ion Battery Anode. Advanced Energy Materials. 2018, 1703155. (高被引论文)
11. Shuquan Liang* et al. Metal Organic Framework-Templated Synthesis of Bimetallic Selenides with Rich Phase Boundaries for Sodium-Ion Storage and Oxygen Evolution Reaction. ACS Nano. 13 (2019) 5635.
12. Shuquan Liang* et al. Recent Advances in Aqueous Zinc-ion Batteries. ACS Energy Letters. DOI: 10.1021/acsenergylett.8b01426. (高被引论文)
13. Shuquan Liang* et al. Suppressing Manganese Dissolution in Potassium Manganate with Rich Oxygen Defects Engaged High-Energy-Density and Durable Aqueous Zinc-Ion Battery. Advanced Functional Materials. 29 (2019) 1808375.
14. Shuquan Liang* et al. Electrochemical Activation of Manganese-based Cathode in Aqueous Zinc-Ion Electrolyte. Advanced Functional Materials. 2020, DOI: 10.1002/adfm.202002711
15. Shuquan Liang* et al. Nanoflake-Constructed Porous Na3V2(PO4)3/C Hierarchical Microspheres as a Bicontinuous Cathode for Sodium-Ion Batteries Applications. Nano Energy. 60 (2019) 312-323.
16. Shuquan Liang* et al. MOFs Nanosheets Derived Porous Metal Oxide-Coated Three-Dimensional Substrates for Lithium-Ion Battery Applications. Nano Energy. 26, 2016, 57-65. (高被引论文)
17. Shuquan Liang* et al. Potassium Vanadates with Stable Structure and Fast Ion Diffusion Channel as Cathode for Rechargeable Aqueous Zinc-Ion Batteries. Nano Energy. 2018, 51, 579-587.
18. Shuquan Liang* et al. " Observation of Combination Displacement/Intercalation Reaction in Aqueous Zinc-ion Battery. " Energy Storage Materials, 18 (2019) 10-14.
29. Shuquan Liang* et al. Encapsulation of CoSx Nanocrystals into N/S Co‐Doped Honeycomb‐Like 3D Porous Carbon for High‐Performance Lithium Storage. Advanced Science. 2018, 1800829.
20. Shuquan Liang* et al. Caging Na3V2(PO4)2F3 Microcubes in Cross-Linked Graphene Enabling Ultra-Fast Sodium Storage and Long-Term Cycling. Advanced Science. 2018, 201800680.