题名 | Oxidation-Resistant Metallic Bismuth Nanoparticles for Electrically Conductive Adhesives |
作者 | |
通讯作者 | Cao, Ge; Tian, Yanqing |
发表日期 | 2023-09-01
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DOI | |
发表期刊 | |
EISSN | 2574-0970
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卷号 | 6期号:18页码:16343-16352 |
摘要 | Bismuth (Bi) metallic material is one of the most widely used heavy metals because of its low cost, excellent light conversion efficiency, and high X-ray attenuation coefficient. However, large-scale synthesis of highly processable and oxidation-resistant Bi nanoparticles remains challenging. Based on the above concerns, we report a facile, scalable, polyol-mediated synthesis of high-quality Bi nanoparticles using citrate as a capping agent and polyvinylpyrrolidone (PVP) as a dispersant. The presence of citrate and PVP improved Bi nanoparticle's oxidation resistance and processability. These nanoparticles can maintain excellent oxidation resistance in an ambient atmosphere for more than 120 days and form high-quality suspensions in various commonly used solvents. Moreover, large-scale and rapid synthesis of the nanoparticles was achieved by simply using the green reagent stannous citrate [tin (II) citrate] as a reducing agent. These properties make them promising as complementary conductive fillers in electrically conductive adhesives (ECAs). The Bi nanoparticles could be effectively combined with silver flakes in epoxy resins to enhance the conductivity of ECAs significantly. With the addition of only 5 wt % Bi nanoparticles, the resistivity of ECAs could be reduced to 1/3000 of that of ECAs with the same silver content, showing great promise in next-generation ECA products. |
关键词 | |
相关链接 | [来源记录] |
收录类别 | |
语种 | 英语
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学校署名 | 第一
; 通讯
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资助项目 | SUSTech[Y01256114]
; 2022 Guangdong Provincial College Students Innovation and Entrepreneurship Training Program[2022S01]
; Special Funds for the Cultivation of Guangdong College Students' Scientific and Technological Innovation (" Climbing Program" Special Funds)[pdjh2023c10906]
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WOS研究方向 | Science & Technology - Other Topics
; Materials Science
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WOS类目 | Nanoscience & Nanotechnology
; Materials Science, Multidisciplinary
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WOS记录号 | WOS:001061146300001
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出版者 | |
EI入藏号 | 20233914779239
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EI主题词 | Adhesives
; Alcohols
; Bismuth compounds
; Conversion efficiency
; Epoxy resins
; Heavy metals
; Nanoparticles
; Synthesis (chemical)
; Tin compounds
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EI分类号 | Energy Conversion Issues:525.5
; Metallurgy and Metallography:531
; Metals Corrosion:539.1
; Nanotechnology:761
; Chemical Reactions:802.2
; Organic Compounds:804.1
; Organic Polymers:815.1.1
; Solid State Physics:933
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来源库 | Web of Science
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引用统计 |
被引频次[WOS]:0
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成果类型 | 期刊论文 |
条目标识符 | http://sustech.caswiz.com/handle/2SGJ60CL/571833 |
专题 | 工学院_材料科学与工程系 前沿与交叉科学研究院 |
作者单位 | 1.Southern Univ Sci & Technol, Dept Mat Sci & Engn, Shenzhen 518055, Peoples R China 2.Southern Univ Sci & Technol, Acad Adv Interdisciplinary Studies, Shenzhen 518055, Peoples R China 3.Harbin Inst Technol, State Key Lab Adv Welding & Joining, Harbin 150001, Peoples R China |
第一作者单位 | 材料科学与工程系 |
通讯作者单位 | 材料科学与工程系 |
第一作者的第一单位 | 材料科学与工程系 |
推荐引用方式 GB/T 7714 |
Cao, Ge,Jiang, Chengwei,Cai, Shaoyong,et al. Oxidation-Resistant Metallic Bismuth Nanoparticles for Electrically Conductive Adhesives[J]. ACS APPLIED NANO MATERIALS,2023,6(18):16343-16352.
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APA |
Cao, Ge.,Jiang, Chengwei.,Cai, Shaoyong.,Chen, Yonghao.,Xing, Yaru.,...&Tian, Yanqing.(2023).Oxidation-Resistant Metallic Bismuth Nanoparticles for Electrically Conductive Adhesives.ACS APPLIED NANO MATERIALS,6(18),16343-16352.
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MLA |
Cao, Ge,et al."Oxidation-Resistant Metallic Bismuth Nanoparticles for Electrically Conductive Adhesives".ACS APPLIED NANO MATERIALS 6.18(2023):16343-16352.
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