氮化硼
焦耳加热
材料科学
纳米结构
催化作用
焦耳(编程语言)
闪光灯(摄影)
维数(图论)
纳米技术
氮化物
化学工程
硼
复合材料
化学
热力学
物理
有机化学
数学
工程类
光学
功率(物理)
图层(电子)
纯数学
作者
Jinhang Chen,Yi Cheng,Phelecia Scotland,Jaeho Shin,Lorenzo Castelli,John T. Li,Weiyin Chen,Kevin M. Wyss,Qiming Liu,Emmanuel O. Onah,Geoff Wehmeyer,Yufeng Zhao,James M. Tour
出处
期刊:ACS Nano
[American Chemical Society]
日期:2025-07-02
卷期号:19 (27): 24904-24911
被引量:6
标识
DOI:10.1021/acsnano.5c03593
摘要
Boron nitride (BN) is well-known for its excellent thermal conductivity, high chemical stability, and low dielectric constant, making it widely used as a lubricant, thermal management material, and electrical insulator. For different applications, the nanostructure of BN plays a prominent role. In particular, boron nitride nanotubes (BNNTs) are preferred for enhancing the properties in specific directions. Traditional BNNT synthetic methods often require valuable precursors and catalysts and prolonged reaction time for structure engineering, limiting their practical applications. Here, we present a dimension engineering strategy to controllably synthesize one-dimensional BNNTs and two-dimensional nanosheets (BNNSs) by flash Joule heating (FJH) within 1 min. The scalable production of ∼5 g is achieved per batch. During BN synthesis, sulfur is identified as a crucial additive that accelerates precursor dehydration and facilitates nanotube formation. When applied as additives in composites, BNNTs exhibit enhanced mechanical strength and thermal conductivity compared to BNNSs, highlighting the necessity of BN dimension engineering for diverse applications. This work offers a feasible strategy for tailoring BN nanostructures and optimizing their properties, with potential applicability in the synthesis of other nanomaterials beyond BN.
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