Bozhi Tian

Bozhi Tian

University of Chicago

H-index: 61

North America-United States

About Bozhi Tian

Bozhi Tian, With an exceptional h-index of 61 and a recent h-index of 37 (since 2020), a distinguished researcher at University of Chicago, specializes in the field of Materials Science, Physical Chemistry, Biophysics, Bioengineering.

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

Multimodal probing of T-cell recognition with hexapod heterostructures

Printed circuit boards made greener

Porous and monolithic carbon membranes and their use

Exploring Present and Future Directions in Nano-Enhanced Optoelectronic Neuromodulation

Monolithic-to-focal evolving biointerfaces in tissue regeneration and bioelectronics

Methods and systems for modulating cellular activation

Chemical Approaches to Emerging Advancements in Deformable Bioelectronics: Synthesis, Device Concepts, Performance, and Applications

Device and method for producing extracellular vesicles

Bozhi Tian Information

University

Position

The

Citations(all)

19098

Citations(since 2020)

5325

Cited By

15877

hIndex(all)

61

hIndex(since 2020)

37

i10Index(all)

121

i10Index(since 2020)

94

Email

University Profile Page

University of Chicago

Google Scholar

View Google Scholar Profile

Bozhi Tian Skills & Research Interests

Materials Science

Physical Chemistry

Biophysics

Bioengineering

Top articles of Bozhi Tian

Title

Journal

Author(s)

Publication Date

Multimodal probing of T-cell recognition with hexapod heterostructures

Nature Methods

Xiaodan Huang

Lingyuan Meng

Guoshuai Cao

Aleksander Prominski

Yifei Hu

...

2024/2/19

Printed circuit boards made greener

Nature Sustainability

Pengju Li

Bozhi Tian

2024/4/26

Porous and monolithic carbon membranes and their use

2024/1/11

Exploring Present and Future Directions in Nano-Enhanced Optoelectronic Neuromodulation

Chuanwang Yang

Zhe Cheng

Pengju Li

Bozhi Tian

2024/4/23

Monolithic-to-focal evolving biointerfaces in tissue regeneration and bioelectronics

Nature Chemical Engineering

Jiuyun Shi

Yiliang Lin

Pengju Li

Phil Mickel

Changxu Sun

...

2024/1

Methods and systems for modulating cellular activation

2020/12/17

Chemical Approaches to Emerging Advancements in Deformable Bioelectronics: Synthesis, Device Concepts, Performance, and Applications

Jj Abu-Halimah

Aman Majmudar

Bozhi Tian

2024/1/1

Device and method for producing extracellular vesicles

2024/3/28

Monolithic silicon for high spatiotemporal translational photostimulation

Nature

Pengju Li

Jing Zhang

Hidenori Hayashi

Jiping Yue

Wen Li

...

2024/2/21

Method of preparation of silicon carbide composition and use thereof

2023/6/15

Nanomaterial-enabled bioelectrical interfaces

Bernadette A Miao

Bozhi Tian

2023/1/1

Perspectives on Multiscale Colloid-Based Materials for Biomedical Applications

Wen Li

Judah Huberman-Shlaes

Bozhi Tian

2023/9/21

Bionic opto-responsive fiber for directing neurite growth

Materials Today Nano

Christoph Alexander Müller

Pengju Li

Yuqing Wang

Mingdong Dong

Bozhi Tian

...

2023/6/1

Bioadhesive polymer semiconductors and transistors for intimate biointerfaces

Science

Nan Li

Yang Li

Zhe Cheng

Youdi Liu

Yahao Dai

...

2023/8/11

Perspectives on tissue-like bioelectronics for neural modulation

Changxu Sun

Zhe Cheng

Jj Abu-Halimah

Bozhi Tian

2023/5/5

Nanowired human cardiac organoid transplantation enables highly efficient and effective recovery of infarcted hearts

Science Advances

Yu Tan

Robert C Coyle

Ryan W Barrs

Sophia E Silver

Mei Li

...

2023/8/4

Biodegradable Composition and Method of Preparation Thereof

2023/2/16

Achieving tissue-level softness on stretchable electronics through a generalizable soft interlayer design

Nature Communications

Yang Li

Nan Li

Wei Liu

Aleksander Prominski

Seounghun Kang

...

2023/7/26

A soil-inspired dynamically responsive chemical system for microbial modulation

Nature chemistry

Yiliang Lin

Xiang Gao

Jiping Yue

Yin Fang

Jiuyun Shi

...

2023/1

Bridging the Gap—Thermofluidic Designs for Precision Bioelectronics

Advanced Healthcare Materials

Jingcheng Ma

Aman Majmudar

Bozhi Tian

2023/11/17

See List of Professors in Bozhi Tian University(University of Chicago)