Daeik Jang

Daeik Jang

KAIST

H-index: 15

Asia-South Korea

About Daeik Jang

Daeik Jang, With an exceptional h-index of 15 and a recent h-index of 15 (since 2020), a distinguished researcher at KAIST, specializes in the field of Carbon nanotube, Multi-functional composites, Piezoresistive sensors, Electrical-heating composites.

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

Investigation on NTC/PTC effects of cement-based self-heating composites with varied conductive filler contents

Absorption-dominant electromagnetic interference (EMI) shielding cement with hollow glass microsphere (HGM) at elevated temperatures

A multiscale modeling framework for predicting strain‐dependent electrical conductivity of carbon nanotube‐incorporated nanocomposites considering the electron tunneling effect

Enhancing piezoresistivity of cement sensor with supplementary materials and carbonation curing

Investigation of leaching behaviors of carbonation-cured CSA cements using an electrically accelerated leaching test

Directionally sensitive cement-based sensor using carbon nanotube and carbonyl iron powder (CNT@ CIP)-based nanohybrid clusters

Effects of electrodes type and design on electrical stability of conductive cement as exposed to various weathering conditions

Electrical impedance-based evaluation of self-healing degree in cement composites with biological admixtures

Daeik Jang Information

University

Position

___

Citations(all)

594

Citations(since 2020)

594

Cited By

46

hIndex(all)

15

hIndex(since 2020)

15

i10Index(all)

21

i10Index(since 2020)

21

Email

University Profile Page

Google Scholar

Daeik Jang Skills & Research Interests

Carbon nanotube

Multi-functional composites

Piezoresistive sensors

Electrical-heating composites

Top articles of Daeik Jang

Investigation on NTC/PTC effects of cement-based self-heating composites with varied conductive filler contents

Developments in the Built Environment

2024/4/1

Daeik Jang
Daeik Jang

H-Index: 5

Absorption-dominant electromagnetic interference (EMI) shielding cement with hollow glass microsphere (HGM) at elevated temperatures

2024/3/4

Daeik Jang
Daeik Jang

H-Index: 5

A multiscale modeling framework for predicting strain‐dependent electrical conductivity of carbon nanotube‐incorporated nanocomposites considering the electron tunneling effect

Polymer Composites

2024/3

Jihoon Park
Jihoon Park

H-Index: 0

Daeik Jang
Daeik Jang

H-Index: 5

Enhancing piezoresistivity of cement sensor with supplementary materials and carbonation curing

Advances in Cement Research

2024/2/5

Daeik Jang
Daeik Jang

H-Index: 5

Haemin Jeon
Haemin Jeon

H-Index: 19

Investigation of leaching behaviors of carbonation-cured CSA cements using an electrically accelerated leaching test

Construction and Building Materials

2024/1/12

Directionally sensitive cement-based sensor using carbon nanotube and carbonyl iron powder (CNT@ CIP)-based nanohybrid clusters

Construction and Building Materials

2023/12/15

Effects of electrodes type and design on electrical stability of conductive cement as exposed to various weathering conditions

Carbon Letters

2024/4/1

Daeik Jang
Daeik Jang

H-Index: 5

Electrical impedance-based evaluation of self-healing degree in cement composites with biological admixtures

Case Studies in Construction Materials

2023/12/1

Daeik Jang
Daeik Jang

H-Index: 5

Jihoon Park
Jihoon Park

H-Index: 0

Impact of silica aerogel addition on the electrical and piezo-resistive sensing stability of CNT-embedded cement-based sensors exposed to varied environments

Journal of Building Engineering

2023/11/1

Daeik Jang
Daeik Jang

H-Index: 5

Haemin Jeon
Haemin Jeon

H-Index: 19

Flexural behavior of reinforced concrete beams strengthened with an ultra-high performance concrete panel of various thicknesses

Journal of Building Engineering

2021/1/1

Effect of carbonation curing regime on electric heating performance of CNT/cement composites

Journal of Building Engineering

2023/8/15

Pressure-aided fabrication of CNT-incorporated composites made with fly ash or slag-blended Portland cement

Composite Structures

2023/6/1

Cyclic heat-generation and storage capabilities of self-heating cementitious composite with an addition of phase change material

Construction and Building Materials

2023/3/10

Daeik Jang
Daeik Jang

H-Index: 5

Influence of various deterioration factors on the electrical properties of conductive cement paste

Construction and Building Materials

2023/2/27

Daeik Jang
Daeik Jang

H-Index: 5

Effects of Carbon Nanotube and Graphene Oxide Incorporation on the Improvements of Magneto-Induced Electrical Sensitivity of Magneto-Rheological Gel

Polymers

2022/12/3

Daeik Jang
Daeik Jang

H-Index: 5

Hao Cheng
Hao Cheng

H-Index: 1

A Comprehensive Study on EMI Shielding Performance of Carbon Nanomaterials-Embedded CFRP or GFRP Composites

Polymers

2022/12/1

Daeik Jang
Daeik Jang

H-Index: 5

Sporosarcina pasteurii-induced hydration and shrinkage properties of Portland cement

Construction and Building Materials

2022/11/21

Deep learning-based LSTM model for prediction of long-term piezoresistive sensing performance of cement-based sensors incorporating multi-walled carbon nanotube

Computers and Concrete

2022/11

Daeik Jang
Daeik Jang

H-Index: 5

Joonho Seo
Joonho Seo

H-Index: 7

Material characterization and piezoresistive sensing capability assessment of thin-walled CNT-embedded ultra-high performance concrete

Cement and Concrete Composites

2022/11/1

Machine Learning-Based Predictions on the Self-Heating Characteristics of Nanocomposites with Hybrid Fillers.

Computers, Materials and Continua

2022/1/1

See List of Professors in Daeik Jang University(KAIST)

Co-Authors

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