Kaili Yao

About Kaili Yao

Kaili Yao, With an exceptional h-index of 14 and a recent h-index of 14 (since 2020), a distinguished researcher at Harbin Institute of Technology, specializes in the field of CVD diamond, material science.

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

Antimicrobial Studies of Black Silicon and Black Diamond Using Gram‐Positive Bacteria

Bioinspired flexible and programmable negative stiffness mechanical metamaterials

Effect of beam configuration on its multistable and negative stiffness properties

Hydrophobicity and Adhesion of Aggregated Diamond Particles

Real-time tunable negative stiffness mechanical metamaterial

Fabrication of Au/Ni/boron-doped diamond electrodes via hydrogen plasma etching graphite and amorphous boron for efficient non-enzymatic sensing of glucose

Au nanospheres modified boron-doped diamond microelectrode grown via hydrogen plasma etching solid doping source for dopamine detection

Mechanical response of negative stiffness truncated-conical shell systems: experiment, numerical simulation and empirical model

Kaili Yao Information

University

Position

___

Citations(all)

722

Citations(since 2020)

714

Cited By

194

hIndex(all)

14

hIndex(since 2020)

14

i10Index(all)

21

i10Index(since 2020)

21

Email

University Profile Page

Google Scholar

Kaili Yao Skills & Research Interests

CVD diamond

material science

Top articles of Kaili Yao

Antimicrobial Studies of Black Silicon and Black Diamond Using Gram‐Positive Bacteria

Advanced Engineering Materials

2023/11

Bioinspired flexible and programmable negative stiffness mechanical metamaterials

Advanced Intelligent Systems

2023/6

Effect of beam configuration on its multistable and negative stiffness properties

Composite Structures

2022/4/15

Hydrophobicity and Adhesion of Aggregated Diamond Particles

physica status solidi (a)

2021/3

Real-time tunable negative stiffness mechanical metamaterial

Extreme Mechanics Letters

2020/11/1

Fabrication of Au/Ni/boron-doped diamond electrodes via hydrogen plasma etching graphite and amorphous boron for efficient non-enzymatic sensing of glucose

Journal of Electroanalytical Chemistry

2020/8/15

Au nanospheres modified boron-doped diamond microelectrode grown via hydrogen plasma etching solid doping source for dopamine detection

Journal of Materials Science & Technology

2020/7/15

Mechanical response of negative stiffness truncated-conical shell systems: experiment, numerical simulation and empirical model

Composites Part B: Engineering

2020/5/1

Programmable Buckling-based negative stiffness metamaterial

Materials Letters

2020/3/1

A self-healing transparent polydimethylsiloxane elastomer based on imine bonds

European Polymer Journal

2020/1/15

See List of Professors in Kaili Yao University(Harbin Institute of Technology)