Yudi Kuang/况宇迪

About Yudi Kuang/况宇迪

Yudi Kuang/况宇迪, With an exceptional h-index of 49 and a recent h-index of 47 (since 2020), a distinguished researcher at South China University of Technology, specializes in the field of Biomaterials, 3D Printing, Flexible Electronics, Water treatment, Energy Storage Nanocellulose.

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

High-value utilization of pineapple leaf fibers towards high-performance electromagnetic shielding materials

Wood-based solar thermal devices, and methods for fabrication and use thereof

3D printed pore morphology mediates bone marrow stem cell behaviors via RhoA/ROCK2 signaling pathway for accelerating bone regeneration

Beta-TCP scaffolds with rationally designed macro-micro hierarchical structure improved angio/osteo-genesis capability for bone regeneration

Enhanced osmotic energy conversion through bacterial cellulose based double-network hydrogel with 3D interconnected nanochannels

Nanocellulose for Water Treatment Applications

Porous and conductive cellulose nanofiber/carbon nanotube foam as a humidity sensor with high sensitivity

Hierarchically porous calcium–silicon nanosphere-enabled co-delivery of microRNA-210 and simvastatin for bone regeneration

Yudi Kuang/况宇迪 Information

University

Position

University of Maryland

Citations(all)

12302

Citations(since 2020)

11827

Cited By

4312

hIndex(all)

49

hIndex(since 2020)

47

i10Index(all)

66

i10Index(since 2020)

66

Email

University Profile Page

Google Scholar

Yudi Kuang/况宇迪 Skills & Research Interests

Biomaterials

3D Printing

Flexible Electronics

Water treatment

Energy Storage Nanocellulose

Top articles of Yudi Kuang/况宇迪

High-value utilization of pineapple leaf fibers towards high-performance electromagnetic shielding materials

Materials Today Nano

2023/12/1

Wood-based solar thermal devices, and methods for fabrication and use thereof

2023/11/9

3D printed pore morphology mediates bone marrow stem cell behaviors via RhoA/ROCK2 signaling pathway for accelerating bone regeneration

Bioactive Materials

2023/8/1

Beta-TCP scaffolds with rationally designed macro-micro hierarchical structure improved angio/osteo-genesis capability for bone regeneration

Journal of Materials Science: Materials in Medicine

2023/7/24

Enhanced osmotic energy conversion through bacterial cellulose based double-network hydrogel with 3D interconnected nanochannels

Carbohydrate Polymers

2023/4/1

Nanocellulose for Water Treatment Applications

2022/11/1

Porous and conductive cellulose nanofiber/carbon nanotube foam as a humidity sensor with high sensitivity

Carbohydrate Polymers

2022/9/15

Hierarchically porous calcium–silicon nanosphere-enabled co-delivery of microRNA-210 and simvastatin for bone regeneration

Journal of Materials Chemistry B

2021

Versatile wood cellulose for biodegradable electronics

2021/2

Electrostatic self-assembly enabled flexible paper-based humidity sensor with high sensitivity and superior durability

Chemical Engineering Journal

2021/1/15

3D-printed highly deformable electrodes for flexible lithium ion batteries

Energy Storage Materials

2020/12/1

MXene‐based conductive organohydrogels with long‐term environmental stability and multifunctionality

Advanced Functional Materials

2020/11

Structure–property–function relationships of natural and engineered wood

2020/9

Undervalued hardwoods for engineered materials and components.

2020/8/24

Highly elastic hydrated cellulosic materials with durable compressibility and tunable conductivity

ACS nano

2020/7/27

Cellulose nanofiber/carbon nanotube dual network-enabled humidity sensor with high sensitivity and durability

ACS applied materials & interfaces

2020/7/1

Flexible nanocellulose enhanced Li+ conducting membrane for solid polymer electrolyte

Energy Storage Materials

2020/3/17

Lignocellulose enabled highly transparent nanopaper with tunable ultraviolet-blocking property and durability

ACS Sustainable Chemistry & Engineering

2020/11/9

An energy‐efficient, wood‐derived structural material enabled by pore structure engineering towards building efficiency

Small Methods

2020/1

See List of Professors in Yudi Kuang/况宇迪 University(South China University of Technology)

Co-Authors

academic-engine