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脱溶剂引发的具有热光双功能的纯氮化硼薄膜的多功能转移印刷

Desolvation-Triggered Versatile Transfer-Printing of Pure BN Films with Thermal-Optical Dual Functionality.

作者信息

Han Yujin, Han Hyeuk Jin, Rah Yoonhyuk, Kim Cheolgyu, Kim Moohyum, Lim Hunhee, Ahn Kwang Ho, Jang Hanhwi, Yu Kyoungsik, Kim Taek-Soo, Cho Eugene N, Jung Yeon Sik

机构信息

Department of Materials Science and Engineering, Korea Advanced Institute of Science and Technology (KAIST), 291 Daehak-ro, Yuseong-gu, Daejeon, 34141, Republic of Korea.

School of Electrical Engineering, Korea Advanced Institute of Science and Technology (KAIST), 291 Daehak-ro, Yuseong-gu, Daejeon, 34141, Republic of Korea.

出版信息

Adv Mater. 2020 Sep;32(38):e2002099. doi: 10.1002/adma.202002099. Epub 2020 Aug 16.

Abstract

Although hexagonal boron nitride (BN) nanostructures have recently received significant attention due to their unique physical and chemical properties, their applications have been limited by a lack of processability and poor film quality. In this study, a versatile method to transfer-print high-quality BN films composed of densely stacked BN nanosheets based on a desolvation-induced adhesion switching (DIAS) mechanism is developed. It is shown that edge functionalization of BN sheets and rational selection of membrane surface energy combined with systematic control of solvation and desolvation status enable extensive tunability of interfacial interactions at BN-BN, BN-membrane, and BN-substrate boundaries. Therefore, without incorporating any additives in the BN film and applying any surface treatment on target substrates, DIAS achieves a near 100% transfer yield of pure BN films on diverse substrates, including substrates containing significant surface irregularities. The printed BNs demonstrate high optical transparency (>90%) and excellent thermal conductivity (>167 W m K) for few-micrometer-thick films due to their dense and well-ordered microstructures. In addition to outstanding heat dissipation capability, substantial optical enhancement effects are confirmed for light-emitting, photoluminescent, and photovoltaic devices, demonstrating their remarkable promise for next-generation optoelectronic device platforms.

摘要

尽管六方氮化硼(BN)纳米结构因其独特的物理和化学性质最近受到了广泛关注,但其应用却因缺乏可加工性和薄膜质量差而受到限制。在本研究中,开发了一种基于去溶剂化诱导粘附切换(DIAS)机制转移印刷由密集堆叠的BN纳米片组成的高质量BN薄膜的通用方法。结果表明,BN片的边缘功能化、膜表面能的合理选择以及对溶剂化和去溶剂化状态的系统控制,能够实现BN-BN、BN-膜和BN-基板边界处界面相互作用的广泛可调性。因此,在不向BN薄膜中添加任何添加剂且不对目标基板进行任何表面处理的情况下,DIAS在包括具有明显表面不规则性的基板在内的各种基板上实现了近乎100%的纯BN薄膜转移产率。由于其致密且有序的微观结构,印刷的BN对于几微米厚的薄膜表现出高光学透明度(>90%)和优异的热导率(>167 W m K)。除了出色的散热能力外,还证实了发光、光致发光和光伏器件具有显著的光学增强效果,这表明它们在下一代光电器件平台方面具有巨大潜力。

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