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Collection and Characterization of Synthetic Airborne Particles 合成空气微粒的收集与表征
Pub Date : 2023-02-01 DOI: 10.5185/amlett.2023.011714
M. Grosu, E. Visileanu, A. Ene, R. Scarlat, V. Marinescu
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引用次数: 0
A Perspective for the Collective Friction and Wear of Tungsten Alloy Balls 钨合金球的集体摩擦磨损研究进展
Pub Date : 2023-02-01 DOI: 10.5185/amlett.2023.011711
L. Pang
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引用次数: 0
Material-oriented engineering for eco-optimized structures—a new design approach 面向材料的生态优化结构设计新途径
Pub Date : 2023-02-01 DOI: 10.5185/amlett.2023.011713
V. Gribniak
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引用次数: 3
Multi-omics technology for demystifying herbal medicine 揭示草药奥秘的多组学技术
Pub Date : 2023-02-01 DOI: 10.5185/amlett.2023.011712
A. Zhang, Shi Qiu
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引用次数: 1
Distribution of cadmium and lead levels in the intertidal clam Glauconome virens: A biomonitoring study 潮间带蛤体内镉和铅的分布:生物监测研究
Pub Date : 2023-02-01 DOI: 10.5185/amlett.2023.011716
C. Yap, Razeff Shardin B. Mat Rejab, W. Cheng, K. Kumar, Hesham M. H. Zakaly, H. Okamura, Y. Horie, M. Sharifinia, Mehrzad Keshavarzifard, A. Naji, Mohamad Saupi Ismail, M. Ong
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引用次数: 0
Practicing Sustainability through ‘NET-ZERO’ R&D: A Decades-Long Urgency 通过“零排放”研发实践可持续发展:长达数十年的紧迫性
Pub Date : 2023-01-01 DOI: 10.5185/amlett.2023.011710
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引用次数: 0
Preparation of Bacterial Nanocellulose-Hydroxyapatite Composite 细菌纳米纤维素-羟基磷灰石复合材料的制备
Pub Date : 2022-10-01 DOI: 10.5185/amlett.2022.041708
A. Kutová, O. Kvítek, K. Hurtuková, V. Svorcik
In this work, we prepared BNC-HAp composite material via in-situ bacterial cultivation. Air-drying and lyophilization was used to solidify the prepared composite hydrogels. The formation of the composite was confirmed by infrared spectroscopy as well as energy-dispersive X-ray spectroscopy and X-ray diffraction. We studied the surface morphology, mechanical and swelling properties together with the water contact angle that represents the surface hydrophilicity/hydrophobicity of the prepared composite. These results suggest the prepared material is promising for construction of synthetic bone grafts.
本研究通过原位细菌培养法制备了BNC-HAp复合材料。采用风干和冻干对制备的复合水凝胶进行固化。通过红外光谱、能量色散x射线光谱和x射线衍射证实了复合材料的形成。我们研究了制备的复合材料的表面形貌、力学性能和膨胀性能,以及表征其表面亲疏水性的水接触角。这些结果表明所制备的材料在构建人工骨移植物方面是有前景的。
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引用次数: 0
Flake like Copper Oxide Nanostructures and their Application in Electrocatalytic Sensing of Growth-Promoting Agents 片状氧化铜纳米结构及其在促生长剂电催化传感中的应用
Pub Date : 2022-10-01 DOI: 10.5185/amlett.2022.041706
Nizamuddin Solangi, Sorath Solangi, G. Naz, G. Mastoi
A compact and intimate interfacial contact between the modified film and the conducting electrode is crucial for electrochemical biosensors. The direct drop-casting of nanomaterials onto the working electrode often fails to construct a compact interfacial arrangement, which results in sluggish electrode kinetics. Here, we describe a simple and cost-effective strategy to produce CuO nanostructure using a modified hydrothermal route. The in-situ growth allowed the formation of a highly ordered interconnected network of sharp flakes configured in the form of large spheres with excellent ITO surface coverage. The CuO nanostructures were highly electrochemically active toward the oxidation of β–adrenergic agonists, i.e., formoterol fumarate (FF). The analytical ability was studied by comparison of the electrochemical behavior of ITO based electrode with its glassy carbon electrode counterpart. The binder-less CuO-based ITO electrode successfully determined FF with a detection window of 0.01 µM to 0.46 µM with practical application for real broiler feed samples collected from the local poultry farms in Hyderabad, Pakistan.
改性膜与导电电极之间紧密的界面接触对电化学生物传感器至关重要。纳米材料直接滴铸到工作电极上往往不能形成紧密的界面排列,从而导致电极动力学缓慢。在这里,我们描述了一种简单而经济的策略,利用改进的水热途径生产CuO纳米结构。原位生长允许形成高度有序的相互连接的尖锐薄片网络,这些薄片以大球体的形式配置,具有出色的ITO表面覆盖。CuO纳米结构对β -肾上腺素能激动剂,即富马酸福莫特罗(FF)的氧化具有高度的电化学活性。通过比较ITO基电极与玻碳电极的电化学行为,研究了ITO基电极的分析能力。无粘结剂的cuo基ITO电极成功测定了FF,检测窗口为0.01µM ~ 0.46µM,并在巴基斯坦海得拉巴当地家禽养殖场的真实肉鸡饲料样品中得到了实际应用。
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引用次数: 0
The Effect of Granulated Fe Cluster-doped CNTs Support on The Catalytic Performance of NiO Catalyst in the DRM Reaction 颗粒状Fe簇掺杂碳纳米管载体对NiO催化剂在DRM反应中催化性能的影响
Pub Date : 2022-10-01 DOI: 10.5185/amlett.2022.041709
E. Kutelia, K. Dossumov, Gaukhar Yergasiyeva, D. Gventsadze, N. Jalabadze, T. Dzigrashvili, L. Nadaraia, O. Tsurtsumia, M. Mambetova
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引用次数: 0
Preparation of (C/Ag) Nanocomposites Induced by High Excimer Laser 高准分子激光诱导制备(C/Ag)纳米复合材料
Pub Date : 2022-10-01 DOI: 10.5185/amlett.2022.041707
K. Hurtuková, N. Slepičková Kasálková, D. Fajstavr, A. Kutová, P. Slepička
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引用次数: 0
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Advanced Materials Letters
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