Yi XUAN

Yi XUAN

Purdue University

H-index: 52

North America-United States

About Yi XUAN

Yi XUAN, With an exceptional h-index of 52 and a recent h-index of 35 (since 2020), a distinguished researcher at Purdue University, specializes in the field of Nanotechnology, Nanobiotechnology, Nanoelectronics, Nanophotonics, Regenerative Medicine.

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

Tissue Nanotransfection Silicon Chip and Related Electroporation-Based Technologies for In Vivo Tissue Reprogramming

Tissue Nanotransfection in Regenerative Medicine

Human fetal dermal fibroblast-myeloid cell diversity is characterized by dominance of pro-healing Annexin1-FPR1 signaling

Driving adult tissue repair via re-engagement of a pathway required for fetal healing

Myogenic tissue nanotransfection improves muscle torque recovery following volumetric muscle loss

Technologies for needles with microchannels

Hydrodynamic thermal transport in silicon at temperatures ranging from 100 to 300 K

Modeling the gene delivery process of the needle array-based tissue nanotransfection

Yi XUAN Information

University

Position

Indiana University School of Medicine

Citations(all)

11781

Citations(since 2020)

5661

Cited By

8480

hIndex(all)

52

hIndex(since 2020)

35

i10Index(all)

107

i10Index(since 2020)

67

Email

University Profile Page

Google Scholar

Yi XUAN Skills & Research Interests

Nanotechnology

Nanobiotechnology

Nanoelectronics

Nanophotonics

Regenerative Medicine

Top articles of Yi XUAN

Tissue Nanotransfection Silicon Chip and Related Electroporation-Based Technologies for In Vivo Tissue Reprogramming

2024/1/19

Tissue Nanotransfection in Regenerative Medicine

2023/1/1

Human fetal dermal fibroblast-myeloid cell diversity is characterized by dominance of pro-healing Annexin1-FPR1 signaling

Iscience

2023/9/15

Driving adult tissue repair via re-engagement of a pathway required for fetal healing

Molecular Therapy

2023/2/1

Myogenic tissue nanotransfection improves muscle torque recovery following volumetric muscle loss

NPJ Regenerative Medicine

2022/10/20

Technologies for needles with microchannels

2022/8/11

Hydrodynamic thermal transport in silicon at temperatures ranging from 100 to 300 K

Physical Review B

2022/4/8

Modeling the gene delivery process of the needle array-based tissue nanotransfection

Nano research

2022/4

Erratum:“Ytterbium-implanted photonic resonators based on thin film lithium niobate”[J. Appl. Phys. 128, 084302 (2020)]

Journal of Applied Physics

2022/3/21

Erratum: “Rare earth-implanted lithium niobate: Properties and on-chip integration” [Appl. Phys. Lett. 115, 071104 (2019)]

Applied Physics Letters

2022/2/28

Fabrication and use of silicon hollow-needle arrays to achieve tissue nanotransfection in mouse tissue in vivo

2021/12

Geometrical quasi-ballistic effects on thermal transport in nanostructured devices

Nano Research

2021/4

Enabling optical steganography, data storage, and encryption with plasmonic colors

Laser & Photonics Reviews

2021/3

Switching dynamics of dark-pulse Kerr frequency comb states in optical microresonators

Physical Review A

2021/1/14

Ytterbium implanted lithium niobate ring resonators on insulator: Fabrication and Characterization

2020/9/28

Ytterbium-implanted photonic resonators based on thin film lithium niobate

Journal of Applied Physics

2020/8/28

Integration of rare earth ions and photonic resonators for quantum application

2020/5/10

Controlling light emission by engineering atomic geometries in silicon photonics

Optics letters

2020/4/1

Far-field thermal imaging below diffraction limit

Optics express

2020/3/2

See List of Professors in Yi XUAN University(Purdue University)

Co-Authors

academic-engine