Chul B Park
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Explore the profile of Chul B Park including associated specialties, affiliations and a list of published articles.
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78
Citations
364
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Recent Articles
1.
Jalali A, Gupta T, Pakharenko V, Rejeb Z, Kheradmandkeysomi M, Sain M, et al.
Carbohydr Polym
. 2025 Jan;
352():123252.
PMID: 39843132
This study focuses on the fabrication of 3D-printed chitosan/TiCT-MXene aerogels with varying MXene concentrations (1, 2, 5, and 10 wt%) using the direct ink writing (DIW) method. The inks were...
2.
Mohseni Taromsari S, Salari M, Shi H, Habibpour S, Saadatnia Z, Tafreshi O, et al.
Adv Mater
. 2024 Dec;
37(6):e2406349.
PMID: 39707652
MXene has garnered growing interest in the field of electrochemistry, thanks to its unique electrical and surface characteristics. Nonetheless, significant challenges persist in realizing its full potential in chemoresistive sensing...
3.
Kheradmandkeysomi M, Salehi A, Omranpour H, Rahmati R, Jalali A, Park C
ACS Appl Mater Interfaces
. 2024 Dec;
17(1):2200-2214.
PMID: 39693213
In this study, we proposed a novel technique to simultaneously enhance the oxygen barrier properties and stiffness of high-density polyethylene (HDPE) while preserving its ductility. By utilizing in situ nanofibrillation,...
4.
Abidli A, Rejeb Z, Zaoui A, Naguib H, Park C
Adv Colloid Interface Sci
. 2024 Nov;
335:103338.
PMID: 39577338
Efficient removal of heavy metals and other toxic metal pollutants from wastewater is essential to protect human health and the surrounding vulnerable ecosystems. Therefore, significant efforts have been invested in...
5.
Omranpour H, Monfared A, Buahom P, Shahreza B, Salehi A, Rahmati R, et al.
ACS Appl Mater Interfaces
. 2024 Oct;
16(43):57981-57994.
PMID: 39410758
This study addresses the inherent fragility and fractal limitations of traditional silica aerogels by developing a bio-templated aerogel fiber. Integrating cellulose nanofibers (CNFs), thermoplastic polyurethane (TPU), and silica aerogel (SA)...
6.
Xie Z, Meng F, Yang J, Wang Y, Park C, Gong P, et al.
Nanoscale
. 2024 Oct;
16(43):20288-20303.
PMID: 39405182
The swing process between the construction and destruction of hybrid nanostructures in conductive nanocomposites under an external stimulation plays a pivotal role in their sensing performance and is directly related...
7.
Tafreshi O, Saadatnia Z, Ghaffari-Mosanenzadeh S, Rastegardoost M, Zhang C, Park C, et al.
ACS Appl Mater Interfaces
. 2024 Oct;
16(40):54597-54609.
PMID: 39351816
Aerogel fibers are an emerging class of ultralightweight materials, which, compared to conventional bulk monolithic and aerogel films, provide better flexibility and extensibility. Despite the recent advancements in this field,...
8.
He J, Wu J, Park C, Gong P, Liang C, Li G
Nanoscale
. 2024 Aug;
16(35):16622-16631.
PMID: 39163094
With the advent of the information age, electromagnetic hazards are becoming more serious. In view of environmental protection, green electromagnetic interference (EMI) shielding materials with little or no secondary reflection...
9.
Zandieh A, Buahom P, Baradaran Shokouhi E, Mark L, Rahmati R, Tafreshi O, et al.
Small
. 2024 Aug;
20(48):e2404189.
PMID: 39109567
An ideal dielectric material for microelectronic devices requires a combination of high anisotropic thermal conductivity and low dielectric constant (ɛ') and loss (tan δ). Polymer composites of boron nitride nanotubes...
10.
Rahman S, Mahmud M, Omranpour H, Salehi A, Monfared A, Park C
ACS Appl Mater Interfaces
. 2024 Jul;
16(32):42687-42703.
PMID: 39082691
In this paper, we develop high aspect ratio nanofibrils from a polycaprolactone-based thermoplastic polyurethane (TPU) and evaluate their performance as a toughening agent. Poly(methyl methacrylate) (PMMA) was chosen as the...