Showing 1,041 - 1,060 results of 1,243 for search 'engineering microscopy', query time: 0.05s Refine Results
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    Corrosion behavior of Fe amorphous/Al-12Si piston composites with core-shell structure by Yingdong Wang, Zuxiang Lin, Chengzhou Liu, Deyong Zhao, Chunqiong Li, Yuan Wang

    Published 2025-01-01
    “…Abstract The current piston material, Al-12Si, lacks sufficient passivation in the acidic lubrication system of biodiesel engines, making it prone to corrosion in the presence of Cl−. …”
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    Solid-state photochemistry: new approaches based on new mechanistic insights by Gerd Kaupp

    Published 2001-01-01
    “…The application of atomic force microscopy (AFM) to solid-state photodimerizations revealed previously unexpected long-range molecular movements in the initial stages (phase rebuilding) and in the final stages (phase transformation and disintegration) of reaction. …”
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    Experimental Study on Failure Law and Mechanism of Red Sandstone under Ultrasonic Vibration Excitation by Jiyao Wang, Xufeng Wang, Xuyang Chen, Liang Chen, Zhanbiao Yang, Zechao Chang, Lei Zhang, Zhijun Niu

    Published 2022-01-01
    “…Rock breakage is inevitable for creating openings in underground engineering operations. Ultrasonic vibration has been attracting extensive attention for such a practice considering its outstanding performance in rock breakage. …”
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    THE EFFECT OF DECELLULARIZATION TECHNIQUE ON COLLAGEN TYPE II AND MATRICES POROSITY OF CARTILAGE BOVINE SCAFFOLD by Dwikora Novembri Utomo, Ika Benny Kartika Sari

    Published 2019-12-01
    “…Stem cell based tissue engineering has become an alternative therapy for the treatment of cartilage defect. …”
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    Crosslinked Decellularized Porcine Pericardium as a Substrate for Conjunctival Reconstruction by Fangyuan Chen, Jingyue Deng, Lishi Luo, Ying Zhu, Yuying Dong, Yuanting Yang, Rijia Zhang, Jian Chen, Qing Zhou

    Published 2022-01-01
    “…Decellularized tissues have become a promising strategy for tissue engineering. In this study, we prepared decellularized porcine pericardium (DPP) scaffolds by the phospholipase A2 method and crosslinked them with aspartic acid (Asp) and human endothelial growth factor (hEGF) to enhance biological performance on the DPP, obtaining DPP-Asp-hEGF scaffolds. …”
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