Attaining the strength-plasticity-electricity balance of carbon nanotube/Cu composites through combining the intragranular carbonized polymer dots distribution DOI Creative Commons
Zhaojie Li,

Xin You,

Liang Liu

и другие.

Journal of Materials Research and Technology, Год журнала: 2023, Номер 27, С. 3339 - 3348

Опубликована: Окт. 17, 2023

Insight into the well-balanced mechanical-electrical properties of copper composites is requisite to provide an understanding for development novel structure-function integrated materials. In this study, multi-dimensional hybrid reinforcements, carbon nanotube and zero-dimensional carbonized polymer dots (abbreviated as: CNT+CPD), were incorporated within matrix via spraying pyrolysis dispersion segmented ball milling routes. A strategy was developed simultaneously introduce intragranular CPD intergranular CNT by controlling spatial configuration. Characterization results show that dispersibility interface wettability CNT-Cu improved pyrolysis. Intragranular facilitated trapping accumulation dislocations inside grain interior, which enhanced strain hardening capability. 3.0 vol% CNT-CPD/Cu achieved good strength-plasticity compatibility (410 MPa 19.8%, i.e., 146.6% 139.3% CNT/Cu composites, respectively). Meanwhile, had also displayed electrical conductivity (96.5%IACS), attributed creation conductive graphitic channels locally around produced a potent electric field with little charge loss. This work presented effective route design advanced demonstrated potential in applications as progressive multi-functional

Язык: Английский

2D flake-like garnet electrolytes for solid-state lithium metal batteries DOI
Jun Cheng, Yixuan Guo, Hongqiang Zhang

и другие.

Chemical Engineering Journal, Год журнала: 2023, Номер 479, С. 147244 - 147244

Опубликована: Ноя. 20, 2023

Язык: Английский

Процитировано

6

Green synthesis of MnCr2O4 nanoparticles using Vernonia amygdalina (bitter leaf) for photocatalytic crystal violet dye degradation DOI
Cyril O. Ugwuoke, Abdudin G. Temam,

Rufus O. Ijeh

и другие.

Journal of Materials Science Materials in Electronics, Год журнала: 2023, Номер 34(31)

Опубликована: Ноя. 1, 2023

Язык: Английский

Процитировано

4

Peroxymonosulfate activation by ZnO-ZnMnO3/CuS nanocomposite for efficient degradation of ciprofloxacin based on a non-radical pathway: The promoting effect of CuS on electron transfer DOI

Ming Yi,

Jiangwei Shang,

Shikai Zhang

и другие.

Chemical Engineering Journal, Год журнала: 2024, Номер 504, С. 158885 - 158885

Опубликована: Дек. 24, 2024

Язык: Английский

Процитировано

1

Graphene-Metal oxide Nanocomposites: Empowering Next-Generation energy storage devices DOI

Zeshan Ali Sandhu,

Muhammad Asam Raza,

Kainat

и другие.

Materials Science and Engineering B, Год журнала: 2024, Номер 313, С. 117947 - 117947

Опубликована: Дек. 26, 2024

Язык: Английский

Процитировано

1

Attaining the strength-plasticity-electricity balance of carbon nanotube/Cu composites through combining the intragranular carbonized polymer dots distribution DOI Creative Commons
Zhaojie Li,

Xin You,

Liang Liu

и другие.

Journal of Materials Research and Technology, Год журнала: 2023, Номер 27, С. 3339 - 3348

Опубликована: Окт. 17, 2023

Insight into the well-balanced mechanical-electrical properties of copper composites is requisite to provide an understanding for development novel structure-function integrated materials. In this study, multi-dimensional hybrid reinforcements, carbon nanotube and zero-dimensional carbonized polymer dots (abbreviated as: CNT+CPD), were incorporated within matrix via spraying pyrolysis dispersion segmented ball milling routes. A strategy was developed simultaneously introduce intragranular CPD intergranular CNT by controlling spatial configuration. Characterization results show that dispersibility interface wettability CNT-Cu improved pyrolysis. Intragranular facilitated trapping accumulation dislocations inside grain interior, which enhanced strain hardening capability. 3.0 vol% CNT-CPD/Cu achieved good strength-plasticity compatibility (410 MPa 19.8%, i.e., 146.6% 139.3% CNT/Cu composites, respectively). Meanwhile, had also displayed electrical conductivity (96.5%IACS), attributed creation conductive graphitic channels locally around produced a potent electric field with little charge loss. This work presented effective route design advanced demonstrated potential in applications as progressive multi-functional

Язык: Английский

Процитировано

2