Kuibo YIN (尹奎波)

About Kuibo YIN (尹奎波)

Kuibo YIN (尹奎波), With an exceptional h-index of 39 and a recent h-index of 34 (since 2020), a distinguished researcher at Southeast University, specializes in the field of Nanomaterials, In-situ TEM.

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

Integration of photothermal water evaporation with photocatalytic microplastics upcycling via nanofluidic thermal management

Superb microplastics separation performance of graphene oxide tuned by laser bombardment

In Situ Polymer-Solution-Processed Graphene–PDMS Nanocomposites for Application in Intracranial Pressure Sensors

Fast synthesis of high-entropy oxides for lithium-ion storage

Microelectromechanical system for in situ quantitative testing of tension–compression asymmetry in nanostructures

Heterostructured Interface Enables Uniform Zinc Deposition for High‐Performance Zinc‐Ion Batteries

Real-time Quantitative Electro-mechanical Characterization of Nanomaterials Based on Integrated MEMS Device

Selective Laser-induced Etching of Borosilicate Glass In Hydrofluoric Acid

Kuibo YIN (尹奎波) Information

University

Position

___

Citations(all)

8394

Citations(since 2020)

4681

Cited By

5743

hIndex(all)

39

hIndex(since 2020)

34

i10Index(all)

84

i10Index(since 2020)

68

Email

University Profile Page

Google Scholar

Kuibo YIN (尹奎波) Skills & Research Interests

Nanomaterials

In-situ TEM

Top articles of Kuibo YIN (尹奎波)

Integration of photothermal water evaporation with photocatalytic microplastics upcycling via nanofluidic thermal management

Proceedings of the National Academy of Sciences

2024/3/26

Superb microplastics separation performance of graphene oxide tuned by laser bombardment

Journal of Hazardous Materials

2024/1/5

In Situ Polymer-Solution-Processed Graphene–PDMS Nanocomposites for Application in Intracranial Pressure Sensors

Nanomaterials

2024/1

Fast synthesis of high-entropy oxides for lithium-ion storage

Chemical Engineering Journal

2024/1/1

Microelectromechanical system for in situ quantitative testing of tension–compression asymmetry in nanostructures

Nanoscale Horizons

2024

Heterostructured Interface Enables Uniform Zinc Deposition for High‐Performance Zinc‐Ion Batteries

Small

2023/9

Real-time Quantitative Electro-mechanical Characterization of Nanomaterials Based on Integrated MEMS Device

IEEE Sensors Journal

2023/8/24

Selective Laser-induced Etching of Borosilicate Glass In Hydrofluoric Acid

2023/8/8

Thermodynamically and Kinetically Stabilized Pt Clusters Against Sintering on CeO2 Nanofibers Through Enclosing CeO2 Nanocubes (Small 34/2023)

Small

2023/8

A General Strategy for Rapidly Optimizing Wearable Resistive Pressure Sensors

Advanced Electronic Materials

2023/8

Achieving Synergetic Anion‐Cation Redox Chemistry in Freestanding Amorphous Vanadium Oxysulfide Cathodes toward Ultrafast and Stable Aqueous Zinc‐Ion Batteries

Advanced Functional Materials

2023/8

Research Progress on Metal–Organic Frameworks by Advanced Transmission Electron Microscopy

2023/5/26

Hierarchical triphase diffusion photoelectrodes for photoelectrochemical gas/liquid flow conversion

Nature Communications

2023/5/8

Aligning Fe2O3 photo-sheets on TiO2 nanofibers with hydrophilic and aerophobic surface for boosting photoelectrochemical performance

Nano Research

2023/3

An integrated MEMS device for in-situ four-probe electro-mechanical characterization of PT nanobeam

2023/1/15

Flexible-in-rigid polycrystalline titanium nanofibers: a toughening strategy from a macro-scale to a molecular-scale

Materials Horizons

2023

Electrospun Poly(vinylidene fluoride)-Based Nanogenerator Modified by Rutile/Anatase-Heterostructured TiO2 Nanorods for Piezoelectricity

ACS Applied Nano Materials

2023/12/6

Characterization of Nanomaterials Using In Situ Liquid-Cell Transmission Electron Microscopy: A Review

ACS Applied Nano Materials

2023/12/1

Tactile Recognition of Shape and Texture on the Same Substrate

Advanced Intelligent Systems

2023/12

1D/2D heterostructure induced built-in electric field accelerate the reaction kinetics of MnO2/MXene paper-like film for advanced flexible zinc-ion batteries

Electrochimica Acta

2023/11/20

See List of Professors in Kuibo YIN (尹奎波) University(Southeast University)