High-Yield, Sustainable Production of High-Quality Ti3C2T x MXene with Enhanced Oxidation Stability via Hydrothermal Etching and Water Delamination
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Ti3C2T x MXene is studied for its high electrical conductivity and unique surface chemistry, enabling applications in energy storage, electronics, and electromagnetic interference (EMI) shielding. However, conventional synthesis based on hydrofluoric acid etching and intercalation-assisted delamination often leads to low yield, structural degradation, and environmental concerns, limiting the scalability. Here, we report a hydrothermal etching method followed by water-only delamination to produce high-quality MXene. The hydrothermal process yields 98% multilayer Ti3C2T x , and subsequent delamination proceeds through water intercalation without lithium ions or organic intercalants, simplifying the process. The resulting few-layer MXene exhibits an average thickness of 1.8 nm, a lateral size of 3.7 mu m, and an electrical conductivity of 15,230 S cm-1, along with enhanced oxidation stability under ambient conditions. An ultrathin freestanding Ti3C2T x film (430 nm) achieves a specific shielding effectiveness per thickness of 4.81 & times; 105, demonstrating its potential for scalable and sustainable EMI shielding applications.

키워드

TRANSITION-METAL CARBIDESFABRICATION
제목
High-Yield, Sustainable Production of High-Quality Ti3C2T x MXene with Enhanced Oxidation Stability via Hydrothermal Etching and Water Delamination
저자
Shim, SuinLee, Dong GyuKwak, YeongwonKim, Gang-YoungLee, SeongwonYoon, GayoungRyu, Gyeong HeeLee, Wang-SangLee, Tae KyungChoi, Chang-Ho
DOI
10.1021/acs.iecr.5c04723
발행일
2026-04
유형
Article
저널명
Industrial and Engineering Chemistry Research
65
14
페이지
7539 ~ 7549