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个人简介
My research program seeks to create materials that match the extraordinary adaptability, rich multi-functionality, and embodied intelligence of natural material systems by bridging the gap between nanoscale engineering and system-level functionality. Although there has been remarkable progress with synthesizing nanoscale structures and materials, it remains difficult to harness their properties to create mechanically robust and long-lasting sensors, actuators, and energy harvesting transducers at the scale of biological tissue and organs. My group will address this bottleneck with a research program that will tackle grand challenges in materials synthesis and integration, controlled stability (i.e. dimensional, crystalline, physical, and chemical) of multiphase materials at the micro/nanoscale level, and versatile manufacturing of functional materials that exhibit durability and longevity under real-world conditions. Progress within these core areas will have immediate impact in printed electronic skin, multifunctional composites, integrated nanoscale devices, stretchable tactile sensors, and other emerging application domains.
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论文共 72 篇作者统计合作学者相似作者
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Nanoscale horizons (2024)
ADVANCED MATERIALS TECHNOLOGIES (2023)
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Materials horizonsno. 11 (2023): 5110-5125
My-Anh Doan,Carmen I. Tobos, Rachel L. Creighton, Teri Guo, Kate A. Faber,Youngshang Han,Cerwyn Chiew,Ian T. Hull,Mohammad H. Malakooti,Kim A. Woodrow
ADVANCED ENGINEERING MATERIALSno. 17 (2023)
FLEXIBLE AND PRINTED ELECTRONICSno. 3 (2023)
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Nondestructive Characterization and Monitoring of Advanced Materials, Aerospace, Civil Infrastructure, and Transportation XVI (2022)
Gregory G. Guymon,Mohammad H. Malakooti
JOURNAL OF POLYMER SCIENCEno. 8 (2022): 1300-1327
ASME 2022 Conference on Smart Materials, Adaptive Structures and Intelligent Systems (2022)
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