Haijian Huang

About Haijian Huang

Haijian Huang, With an exceptional h-index of 21 and a recent h-index of 17 (since 2020), a distinguished researcher at Hefei University of Technology, specializes in the field of nanomaterials, rechargeable batteries, supercapacitors.

His recent articles reflect a diverse array of research interests and contributions to the field:

Efficient Preparation of Biomass‐Based Ultra‐Thin 2D Porous Carbon Materials by In Situ Template‐Activation And Its Application in Sodium Ion Capacitors

Constructing P-CoMoO4@ NiCoP heterostructure nanoarrays on Ni foam as efficient bifunctional electrocatalysts for overall water splitting

Towards high-performance zinc anode for zinc ion hybrid capacitor: Concurrently tailoring hydrodynamic stability, zinc deposition and solvation structure via electrolyte additive

Preparation of single-crystal ternary cathode materials via recycling spent cathodes for high performance lithium-ion batteries

Exfoliating spent cathode materials with robust interlayer interactions into atomic-thin nanosheets for boosting the oxygen evolution reaction

Interfacial engineering of hydrated vanadate to promote the fast and highly reversible H+/Zn2+ co-insertion processes for high-performance aqueous rechargeable batteries

Beyond conventional sodium-ion storage mechanisms: a combinational intercalation/conversion reaction mechanism in Ni-ion modified hydrated vanadate for high-rate sodium-ion storage

Ca/Ni Codoping Enables the Integration of High-Rate and High-Capacity Zn-Ion Storage Performances for Layered Hydrated Vanadate

Haijian Huang Information

University

Position

___

Citations(all)

1680

Citations(since 2020)

1274

Cited By

854

hIndex(all)

21

hIndex(since 2020)

17

i10Index(all)

31

i10Index(since 2020)

28

Email

University Profile Page

Google Scholar

Haijian Huang Skills & Research Interests

nanomaterials

rechargeable batteries

supercapacitors

Top articles of Haijian Huang

Efficient Preparation of Biomass‐Based Ultra‐Thin 2D Porous Carbon Materials by In Situ Template‐Activation And Its Application in Sodium Ion Capacitors

Advanced Functional Materials

2024/2/5

Constructing P-CoMoO4@ NiCoP heterostructure nanoarrays on Ni foam as efficient bifunctional electrocatalysts for overall water splitting

Nano Materials Science

2023/9/1

Towards high-performance zinc anode for zinc ion hybrid capacitor: Concurrently tailoring hydrodynamic stability, zinc deposition and solvation structure via electrolyte additive

Energy Storage Materials

2023/1/1

Preparation of single-crystal ternary cathode materials via recycling spent cathodes for high performance lithium-ion batteries

Nanoscale

2022

Exfoliating spent cathode materials with robust interlayer interactions into atomic-thin nanosheets for boosting the oxygen evolution reaction

Journal of Materials Chemistry A

2022

Interfacial engineering of hydrated vanadate to promote the fast and highly reversible H+/Zn2+ co-insertion processes for high-performance aqueous rechargeable batteries

Energy Storage Materials

2022/11/1

Beyond conventional sodium-ion storage mechanisms: a combinational intercalation/conversion reaction mechanism in Ni-ion modified hydrated vanadate for high-rate sodium-ion storage

Energy Storage Materials

2022/5/1

Ca/Ni Codoping Enables the Integration of High-Rate and High-Capacity Zn-Ion Storage Performances for Layered Hydrated Vanadate

Industrial & Engineering Chemistry Research

2022/3/15

Towards stable and high‐capacity anode materials for sodium‐ion batteries by embedding of Sb/Sn nanoparticles into electrospun mesoporous carbon fibers

Electrochemical Science Advances

2021/11

Engineering superhydrophilic/superaerophobic hierarchical structures of Co-CH@ NiFe-LDH/NF to boost the oxygen evolution reaction

Chemical Engineering Journal

2021/10/15

Fast and highly reversible Na+ intercalation/extraction in Zn/Mg dual-doped P2-Na0.67MnO2 cathode material for high-performance Na-ion batteries

Nano Research

2021/10

Nickel nanoparticles modified MnO nanosheet arrays for high-performance supercapacitor with long-lasting and sustainable capacitance increase

Electrochimica Acta

2021/7/1

Recent advances of mesoscale-structured cathode materials for high energy density lithium-ion batteries

ACS Applied Energy Materials

2021/4/5

Electric field driven de-lithiation: a strategy towards comprehensive and efficient recycling of electrode materials from spent lithium ion batteries

Applied Catalysis B: Environmental

2021/4/1

PVP-bridged γ-LiAlO2 nanolayer on Li1. 2Ni0. 182Co0. 08Mn0. 538O2 cathode materials for improving the rate capability and cycling stability

Chemical Engineering Science

2021/1/16

Construction of a hetero-epitaxial nanostructure at the interface of Li-rich cathode materials to boost their rate capability and cycling performances

Nanoscale

2021

A micromolding method for transparent and flexible thin‐film supercapacitors and hybrid supercapacitors

Advanced Functional Materials

2020/11

Tian Liu
Tian Liu

H-Index: 3

Haijian Huang
Haijian Huang

H-Index: 13

Long Pan
Long Pan

H-Index: 4

Al-doped walnut-shell-like P2-type Na2/3Ni1/3Co (1/3-x) Mn1/3AlxO2 as advanced sodium ion battery cathode materials with enhanced rate and cycling performance

Electrochimica Acta

2020/7/20

SnS/N-Doped carbon composites with enhanced Li+ storage and lifetime by controlled hierarchical submicron-and nano-structuring

CrystEngComm

2020

Xi Chen
Xi Chen

H-Index: 13

Haijian Huang
Haijian Huang

H-Index: 13

Tian Liu
Tian Liu

H-Index: 3

See List of Professors in Haijian Huang University(Hefei University of Technology)