张博雯

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张博雯

2024-06-26 12:40| 来源: 网络整理| 查看: 265

张博雯   工学博士   副教授

邮箱:[email protected]

研究方向:宽禁带半导体器件高可靠封装制造

个人简介

2020年毕业于日本大阪大学,获工学博士学位,发表SCI论文24篇,其中第一/通讯作者论文11篇,总引用270余次;主持并参与多项国家自然基金和企业横向课题;2022年获第18届留日中国人“京都府知事赏”,2017年获国家建设高水平大学公派研究生项目奖学金等;多次受邀参加全球电子与电气工程峰会(GSEEE),国际焊接学会年会(IIW),电子封装技术国际会议(ICEPT)等国际知名会议并做口头发表。

教育经历

1. 2017.10 至 2020.09  大阪大学  博士

2. 2014.09 至 2017.06  吉林大学  硕士

3. 2010.09 至 2014.06  广西大学  学士

工作经历

1. 2021.12 至今,天津工业大学,副教授

2. 2021.06 至 2021.12,天津工业大学,讲师

主要科研项目

1. 国家自然科学基金青年项目,一种实现碳化硅器件高可靠高散热的抗氧化封装互连方法研究,30万元,在研,主持。

2. 天津市杰出青年科学基金项目,高可靠半导体器件封装与材料,100万元,在研,参与。

3. 广州汉源微电子封装材料有限公司,低温烧结银,100万元,在研,参与。

4. 国家自然科学基金面上项目,稀土掺杂纳米碳酸钙的可控制备及其发光性能研究,62万元,结题,参与。

学术论文

[1] Bowen Zhang, Chuantong Chen*, Takuya Sekiguchi, et al. Development of anti-oxidation Ag salt paste for large-Area (35 × 35 mm2) Cu-Cu bonding with ultra-high bonding strength, Journal of Materials Science & Technology, 2022, 113, 261-270. (一区,IF=8.1)

[2] 梅云辉,鲁鑫炎,杜坤,张博雯*;基于低温烧结银的封装互连方法研究进展,《机车电传动》,5,21-27。

[3] Bowen Zhang, Wanli Li*, Masaya Nogi, et al.; Alloying and embedding of Cu-core/Ag-shell nanowires for ultra-stable stretchable and transparent electrodes, ACS Applied Materials & Interfaces, 2019, 11(20): 18540-18547. (一区,IF=9.2)

[4] Bowen Zhang, Chuantong Chen, Wanli Li*, et al. Well-controlled decomposition of copper complex inks enabled by metal nanowire networks for highly compact, conductive, and flexible copper films, Advanced Materials Interfaces, 2019, 7(1): 1901550.(二区,IF=6.1)

[5] Bowen Zhang*, Wanli Li, Jinting Jiu, et al. Large-scale and galvanic replacement free synthesis of Cu@Ag core−shell nanowires for flexible electronics, Inorganic Chemistry, 2019, 58(5): 3374-3381. (二区,IF=5.2)

[6] Bowen Zhang, Wanli Li, Yang Yang, et al. Fully embedded CuNWs/PDMS conductor with high oxidation resistance and high conductivity for stretchable electronics, Journal of Materials Science, 2019, 54(19): 6381-6392. (二区,IF=4.2)

[7] Bowen Zhang, Haifeng Zou, Yanhua Song, et al. Electrospinning fabrication and Luminescence properties of Lu2O2S:Eu3+ fibers,CrystEngComm,2017, 19, 699-707. (二区,IF=3.5)

[8] Bowen Zhang, Haifeng Zou, Hongxia Guan, et al. Lu2O2S: Tb3+, Eu3+ nanorods: luminescence, energy transfer, and multicolour tuneable emission, CrystEngComm, 2016, 18(39): 7620-7628. (二区,IF=3.5)

[9] Bowen Zhang, Haifeng Zou, Yunzhi Dai, et al. Controlled synthesis and morphology dependent luminescence of Lu2O2S:Eu3+ phosphors, Rsc Advances, 2016, 6, 7846-7853. (二区,IF=3.4)

[10] Bowen Zhang, Haifeng Zou, Yunzhi Dai, et al. Spherical Lu2O2S:Eu3+ micro/nano-structure: Controlled synthesis and luminescence properties, Optical Materials, 2017, 64, 88-94. (三区,IF=3.1)

[11] Hongtao Qiao, Baowei Zhao, Xidong Suo*, Xiaoming Xie, Lifang Dang, Jie Yang*, Bowen Zhang*,The biochar derived from carp for high-efficiency solar steam generation and water purification, Global Challenges, 2021, 2100083.

[12] Wanli Li, Yang Yang, Bowen Zhang, et al. Three-dimensional stretchable and transparent conductors with controllable strain-distribution based on template-assisted transfer printing. ACS Applied Materials & Interfaces,2019, 11, 2140-2148. (一区,IF=9.2)

[13] Yidi Sun, Zou H, Bowen Zhang, et al. One-pot synthesis of hydrophobic and enhanced red-emitting CaCO3:Eu3+ phosphors. Journal of Materials Chemistry C, 2015, 3, 5316-5321. (一区,IF=7.4)

[14] Wanli Li, Yang Yang, Bowen Zhang, et al. Highly densified Cu wirings fabricated from air-stable Cu complex ink with high conductivity, enhanced oxidation resistance, and flexibility.Advanced Materials Interfaces, 2018, 1800798. (二区,IF=6.1)

[15] Yidi Sun, Haifeng Zou, Bowen Zhang, et al. Luminescent properties and energy transfer of Gd3+/Eu3+, co-doped cubic CaCO3. Journal of Luminescence, 2016, 178, 307–313. (二区,IF=3.6)



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