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Preparation of Blueberry Anthocyanin Nanoemulsions and Their Stability and Skin Safety Evaluation 蓝莓花青素纳米乳的制备及其稳定性及皮安全性评价
Pub Date : 2023-09-08 DOI: 10.57237/j.mater.2023.04.001
Mingyue Yin, Jieyu Song, Xiaoling Zhou, Wei Zhang, Aoping Wu
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引用次数: 0
Research Progress in Rheology Modifier for Oil and Gas Field Drilling Fluid 油气田钻井液流变改性剂的研究进展
Pub Date : 2023-07-24 DOI: 10.57237/j.mater.2023.03.002
Wei Yan, Zhang Bowen, Zhang Jie
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引用次数: 0
Research Progress in Visualization Analysis of Aramid Nanofibers Based on VOSviewer 基于VOSviewer的芳纶纳米纤维可视化分析研究进展
Pub Date : 2023-06-29 DOI: 10.57237/j.mater.2023.02.002
Peiyi Gao, Haoran Cui, Sijing Huo, Feng Liu, Shiyuan Niu, Huihui Wang, Sai Geng
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引用次数: 0
Research Progress on Photoelectrically Properties of Bismuth Compounds 铋化合物光电性质的研究进展
Pub Date : 2023-06-29 DOI: 10.57237/j.mater.2023.03.001
W. Yan, Du Shuxian, Zhu Hao, Zhou Jian, Ci Lijie, Qi Yuefu
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引用次数: 0
Performance Research of Liquid Metal Flexible Circuits Based on 3D Printing 基于3D打印的液态金属柔性电路性能研究
Pub Date : 2023-06-29 DOI: 10.57237/j.mater.2023.02.001
Tinghui Lu, X. Zhang, Yiming Li, Xiaoqin Su, Yuanxu Song, Lin Du
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引用次数: 0
Progress in the Synthesis of Germanium Chalcogenides Containing Silver 含银硫属锗的合成研究进展
Pub Date : 2023-03-28 DOI: 10.57237/j.mater.2023.01.002
Cui Can, Baiyin Menghe, Guoxin Jia, Teri Gele
: In recent years, germanium containing sulfur compounds have attracted much attention due to their complex structural properties and potential applications, and have been widely used in nonlinear optics, molecular sieve, ion exchange and so on. Group 11 elements Ag have been proved to be successful multifunctional elements often used for synthesis, because they have rich coordination modes and electrothermal properties. In addition, they also enhance the metalophilic interaction, overcome the repulsive force between cationic metal centers, and more easily enter the skeleton to form new materials with unique topological structures. The potential applications of these materials extend beyond traditional fields. The synthesis and structure of germanium chalcogenides containing transition metal silver are reviewed in this paper. Various coordination modes of structural units in the basic framework of transition metal silver and germanium sulfide compounds, synthesis methods, structural characteristics and applications of different germanium sulfide compounds containing transition metal silver are summarized. And the synthesis of germanium sulfide compounds containing silver when alkali metals, transition metal complexes, organic amines are used as structure guide agent.
近年来,含锗硫化合物因其复杂的结构性质和潜在的应用前景而备受关注,在非线性光学、分子筛、离子交换等领域得到了广泛的应用。十一族元素银由于具有丰富的配位模式和电热性质,已被证明是常用的成功的多功能合成元素。此外,它们还增强了亲金属相互作用,克服了阳离子金属中心之间的排斥力,更容易进入骨架,形成具有独特拓扑结构的新材料。这些材料的潜在应用范围超出了传统领域。本文综述了含过渡金属银的硫族锗的合成及其结构。综述了过渡金属银与硫化锗化合物基本骨架中结构单元的各种配位模式、不同含过渡金属银的硫化锗化合物的合成方法、结构特点及应用。并在合成含银硫化锗化合物时采用碱金属、过渡金属配合物、有机胺等作为结构引导剂。
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引用次数: 0
Study on Electromagnetic Interference Shielding Effectiveness of Carbon Nanotubes/Graphite/Wood Plastics Composites 碳纳米管/石墨/木塑复合材料电磁干扰屏蔽性能研究
Pub Date : 2023-03-02 DOI: 10.57237/j.mater.2023.01.001
Song Jianbin, Du Tao, Wu Jinxiong, Wu Patimanabudu, Liang Jiaoli, N. Bate
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引用次数: 0
Effect of Aging on Plastic and Damage Mechanical Behavior of Dentin 老化对牙本质塑性和损伤力学行为的影响
Pub Date : 2023-02-03 DOI: 10.57237/j.mater.2022.02.006
Chenxi Lu, Xingguo Li
: Transparency is a common pathology in aged teeth due to the dentin tubules are filled up with mineral crystals. The mechanical properties of dentin are also affected by ultrastructure changed in the aged dentin. Nanoindentation test is a popular technique to assess the elastic mechanical properties of dentin, while it’s difficult to obtain inelastic mechanical parameters since the indenter tip caused a complex stress distribution within dentin. The plastic-damage model incorporating finite element method is adopted to characterize the plastic and damage behaviors of dentin based on the nanoindentation experiments. The numerical simulations indicate that yield strength of dentin increased with aging. The capacity for energy dissipation via inelastic deformation which reflects the materials’ toughness decreases with increase of age. In addition, the numerical simulations also show that the magnitude of damage decreases with aging. The degradation of the unloading stiffness was caused by the damage at beneath the indenter.
由于牙本质小管中充满了矿物晶体,牙齿透明是老年牙齿常见的病理现象。老化后牙本质超微结构的改变也会影响牙本质的力学性能。纳米压痕试验是牙本质弹性力学性能评估的常用方法,但由于压痕针尖在牙本质内部造成了复杂的应力分布,因此难以获得非弹性力学参数。在纳米压痕实验的基础上,采用结合有限元法的塑性损伤模型表征牙本质的塑性损伤行为。数值模拟结果表明,牙本质的屈服强度随着时效的增加而增加。反映材料韧性的非弹性变形耗散能力随龄期的增加而降低。此外,数值模拟还表明,损伤程度随时效而减小。卸荷刚度的退化是由压头下方的损伤引起的。
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引用次数: 0
Effect of Composition on Crack Susceptibility Index of Al-Si and Al-Si-Mg Alloys 成分对Al-Si和Al-Si- mg合金裂纹敏感性指数的影响
Pub Date : 2023-02-03 DOI: 10.57237/j.mater.2022.02.005
Luo Jihui, Liu Jie, Wudong Yu, Ran Yanrong
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引用次数: 0
Development and Properties of Functional Ceramic-based Photocatalytic Materials 功能陶瓷基光催化材料的发展与性能研究
Pub Date : 2023-01-05 DOI: 10.57237/j.mater.2022.02.003
Shuanglong Lin, L. Jing, Hongtao Lu, Yuehong Qi, Wu Yifei
: With the rapid development of energy, information, environmental protection and biological science and technology, the material with a long history-ceramics, has also obtained a new research progress, namely, the development of functional ceramics. Functional ceramics play a key role in related scientific research and engineering project applications, with their unique thermal, electric, magnetic, acoustic and optical physical characteristics, chemical, biological and appropriate mechanics characteristics. Moreover, because the photocatalytic technology has the characteristics of mild reaction conditions, convenient operation and no secondary pollution, it is considered as the most promising environmental governance technology in the 21st century, that is, it can effectively solve the problems of fossil energy depletion and environmental pollution. In addition, photocatalytic technology also has the characteristics of low energy consumption, and has also become a necessary technology to develop new energy sources. If functional
随着能源、信息、环保和生物科学技术的飞速发展,具有悠久历史的材料——陶瓷,也获得了新的研究进展,即功能陶瓷的发展。功能陶瓷以其独特的热、电、磁、声、光物理特性、化学、生物特性和适当的力学特性,在相关的科学研究和工程项目应用中发挥着关键作用。而且,由于光催化技术具有反应条件温和、操作方便、无二次污染等特点,被认为是21世纪最有前途的环境治理技术,即能有效解决化石能源枯竭和环境污染问题。此外,光催化技术还具有低能耗的特点,也成为开发新能源的必要技术。如果功能
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引用次数: 0
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