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In-situ interfacial reactions in boron nitride-reinforced zinc implants for achieving strength and toughness
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作者 Ci-Jun Shuai Jin Zhang +6 位作者 ming-li yang Chong-Xian He Xiong Shuai Xin-Yi Xiao Dong-Sheng Wang Yin-Jin Shao You-Wen yang 《Rare Metals》 2025年第4期2605-2619,共15页
Boron nitride(BN),as a nano-reinforcement,offers notable benefits for zinc(Zn)-based implants due to its distinct asymmetric hexagonal structure and high fracture strength.However,the limited interface adhesion betwee... Boron nitride(BN),as a nano-reinforcement,offers notable benefits for zinc(Zn)-based implants due to its distinct asymmetric hexagonal structure and high fracture strength.However,the limited interface adhesion between BN and Zn limits its potential for strengthening and toughening.In this study,copper(Cu)was in situ grown on acidified BN through chemical synthesis and subsequently incorporated into laser additive manufacturing of Zn to enhance interface bonding.During this process,the Cu on BN experienced a displacement reaction with Zn due to thermal reduction induced by the high-energy laser,leading to the replacement of Cu by Zn and the formation of a robust covalent bond between BN and the Zn matrix,thereby improving load transfer.Additionally,the reduced Cu further interacted with Zn to produce the CuZn5 phase,which was evenly dispersed in the Zn matrix under Marangoni vortices,resulting in both dispersion and Orowan strengthening.Consequently,the ultimate tensile strength of the composites achieved(251±7)MPa.The fracture toughness also showed a notable increase from 12.10 to 24.03 MPa·m^(1/2),as the unique structure of BN effectively redistributed stress at the crack tip and absorbed considerable fracture energy.Furthermore,the Cu@BN/Zn implants demonstrated excellent antibacterial properties. 展开更多
关键词 Interface bonding Zn implants Laser additive manufacturing Mechanical properties
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Forming quality,mechanical properties,and anti-inflammatory activity of additive manufactured Zn–Nd alloy 被引量:3
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作者 Ci-jun SHUAI ming-li yang +6 位作者 Fang DENG You-wen yang Shu-ping PENG Fang-wei QI Chong-xian HE Li-da SHEN Hui-xin LIANG 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2020年第11期876-891,共16页
Zinc(Zn)has recently been recognized as a promising bone repair material due to its inherent biodegradability and favorable biocompatibility.In this work,rare earth neodymium(Nd)was introduced into a Zn-based alloy fa... Zinc(Zn)has recently been recognized as a promising bone repair material due to its inherent biodegradability and favorable biocompatibility.In this work,rare earth neodymium(Nd)was introduced into a Zn-based alloy fabricated using a laser powder bed fusion(LPBF)process.Results showed that addition of Nd significantly improved the melt fluidity and reduced the evaporation of Zn,thereby achieving parts with a high densification rate of 98.71%.Significantly,the Nd alloying treatment effectively refined the grain size from 25.3 to 6.2μm.Nd Zn5 eutectics precipitated and contributed to a second-phase strengthening effect.As a result,the tensile strength increased to(119.3±5.1)MPa and the Vickers hardness to(76.2±4.1).Moreover,the Zn–Nd alloy exhibited good anti-inflammatory activity,as the Nd ions released during degradation had a strong affinity with cell membrane phospholipids and consequently inhibited the release of inflammatory cytokines.It also presented favorable cytocompatibility,showing great potential as a bone repair material. 展开更多
关键词 Zn–Nd alloy Laser powder bed fusion(LPBF) Anti-inflammatory activity Mechanical properties
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Design of novel bis-benzimidazole derivatives as DNA minor groove binding agents 被引量:2
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作者 Xiu-Jun Wang ming-li yang +5 位作者 Lan-Ping Zhang Tong Yao Cheng Chen Lian-Gang Mao Yin Wang Jie Wu 《Chinese Chemical Letters》 SCIE CAS CSCD 2014年第4期589-592,共4页
A new series of bis-benzimidazole derivatives were designed and synthesized. In vitro cytotoxicity evaluation showed that these compounds exhibited high activity against the selected tumor cells. Among them, compound ... A new series of bis-benzimidazole derivatives were designed and synthesized. In vitro cytotoxicity evaluation showed that these compounds exhibited high activity against the selected tumor cells. Among them, compound 9 owned the best potential, its IC50 values being 5.95μmol/L (mononuclear tumor cell line (U937)) and 5.58 μmol/L (cervical cancer cell (HeLa)). Fluorescence and UV-vis studies showed that compound 9 could bind into the minor groove of DNA. 展开更多
关键词 Bis-benzimidazole Anti-tumor DNA minor groove
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