私密直播全婐app免费大渔直播,国产av成人无码免费视频,男女同房做爰全过程高潮,国产精品自产拍在线观看

Links
Contact Info.
  • Address:陜西省西安市友誼西路127號
  • Zip:710072
  • Tel:029-88431638
  • Fax:
  • Email:nwpugjw@163.com
Current Location :> Home > News > Text
SFPC課題組高導(dǎo)熱PBO納米復(fù)合紙工作發(fā)表在Nano-Micro Letters上

Lin Tang, Kunpeng Ruan, Xi Liu, Yusheng Tang*, Yali Zhang and Junwei Gu*. Flexible and robust functionalized boron nitride/poly(p-phenylene benzobisoxazole) nanocomposite paper with high thermal conductivity and outstanding electrical insulation. Nano-Micro Letters, 2024, 16: 38. 2023IF=31.6 (1區(qū)材料科學Top期刊,中國科技期刊卓越行動計劃-領(lǐng)軍類期刊項目)

https://doi.org/10.1007/s40820-023-01257-5

Abstract

With the rapid development of 5G information technology, thermal conductivity/dissipation problems of highly integrated electronic devices and electrical equipment are becoming prominent. In this work, “high-temperature solid-phase & diazonium salt decomposition” method is carried out to prepare benzidine functionalized boron nitride (m-BN). And the m-BN/poly(p-phenylene benzobisoxazole) nanofiber (PNF) nanocomposite paper with nacre-mimetic layered structures prepared via sol-gel film transformation approach.The obtained m-BN/PNF nanocomposite paper with 50 wt% m-BN presents excellent thermal conductivity, incredible electrical insulation, outstanding mechanical properties and thermal stability, due to the construction of extensive hydrogen bonds and π-π electron interaction between m-BN and PNF, and stable nacre-mimetic layered structures. Its λ∥and λ⊥are 9.68 W/(m·K) and 0.84 W/(m·K), and the volume resistivity & breakdown strength are as high as 2.3×1015Ω·cm and 324.2 kV/mm, respectively. Besides, it also presents extremely high tensile strength of 193.6 MPa and thermal decomposition temperature of 640oC, showing a broad application prospect in high-end thermal management fields such as electronic devices and electrical equipment.

隨著5G信息技術(shù)的快速發(fā)展,高集成化的電子器件和電氣設(shè)備的導(dǎo)/散熱問題愈加突出,亟需設(shè)計制備出兼具優(yōu)異導(dǎo)熱性能和電絕緣性能的聚合物基復(fù)合紙。本文采用“高溫固相-重氮鹽分解”法將聯(lián)苯胺接枝在氮化硼(BN)表面制備功能化BN(m-BN),與有機酸解離制備的聚對苯撐苯并二噁唑納米纖維(PNF)復(fù)合,采用“溶膠-凝膠”薄膜轉(zhuǎn)化工藝制備仿貝殼珍珠層結(jié)構(gòu)的m-BN/PNF納米復(fù)合紙。基于m-BN與PNF之間的氫鍵、π-π電子相互作用以及內(nèi)部的仿貝殼珍珠層結(jié)構(gòu),50 wt% m-BN的m-BN/PNF納米復(fù)合紙展現(xiàn)出優(yōu)異的導(dǎo)熱性能、出色的電絕緣性能、優(yōu)異的力學性能和突出的熱穩(wěn)定性,其λ∥和λ⊥分別為9.68 W/(m·K)和0.84 W/(m·K),體積電阻率和擊穿強度分別高達2.3×1015 Ω·cm和324.2 kV/mm,拉伸強度為193.6 MPa,熱分解溫度為640oC,有望在電子器件和電氣設(shè)備等高端熱管理領(lǐng)域獲得廣泛的應(yīng)用。


論文亮點

1. 基于功能化氮化硼與PNF的π-π作用,誘導(dǎo)BN均勻分布在PNF網(wǎng)絡(luò)中,賦予納米復(fù)合紙優(yōu)異的導(dǎo)熱性能和突出的熱管理能力。

2. 采用溶膠-凝膠薄膜轉(zhuǎn)化工藝,在m-BN/PNF納米復(fù)合紙中構(gòu)筑仿貝殼珍珠層結(jié)構(gòu),其拉伸強度和拉伸模量高達193.6 MPa、3.72 GPa。

3. 基于有序的層狀結(jié)構(gòu),帶電載流子納米復(fù)合紙中進行多次遷移,使其體積電阻率和擊穿強度分別高達2.3×1015 Ω·cm和324.2 kV/mm。


第一作者:唐林

郵件地址:tanglin@cqnu.edu.cn