B
Bao Yang
Researcher at University of Maryland, College Park
Publications - 166
Citations - 10647
Bao Yang is an academic researcher from University of Maryland, College Park. The author has contributed to research in topics: Thermal conductivity & Thermoelectric cooling. The author has an hindex of 44, co-authored 141 publications receiving 7219 citations. Previous affiliations of Bao Yang include Massachusetts Institute of Technology & University of California, Los Angeles.
Papers
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Journal ArticleDOI
Nature-inspired salt resistant bimodal porous solar evaporator for efficient and stable water desalination
Shuaiming He,Chaoji Chen,Yudi Kuang,Ruiyu Mi,Yang Liu,Yong Pei,Weiqing Kong,Wentao Gan,Hua Xie,Emily Hitz,Chao Jia,Xi Chen,Amy Gong,Jianming Liao,Jun Li,Zhiyong Jason Ren,Bao Yang,Siddhartha Das,Liangbing Hu +18 more
TL;DR: In this paper, a bimodal porous structure (e.g., balsa wood) was used as an efficient and stable solar vapor generator for high-salinity brine desalination.
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Smart Textile-Integrated Microelectronic Systems for Wearable Applications
Jidong Shi,Su Liu,Lisha Zhang,Bao Yang,Lin Shu,Ying Yang,Ming Ren,Yang Wang,Jiewei Chen,Wei Chen,Yang Chai,Xiaoming Tao +11 more
TL;DR: The programmable nature of smart textiles makes them an indispensable part of an emerging new technology field and a timely overview and comprehensive review of progress of this field in the last five years are provided.
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Rich Mesostructures Derived from Natural Woods for Solar Steam Generation
Chao Jia,Yiju Li,Zhi Yang,Guang Chen,Yonggang Yao,Feng Jiang,Yudi Kuang,Glenn Pastel,Hua Xie,Bao Yang,Siddhartha Das,Liangbing Hu +11 more
TL;DR: In this article, the mesostructures of several natural wood materials as well as their thermal conductivities and mechanical properties were investigated for high-efficiency solar steam generation based on natural wood.
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Highly Compressible, Anisotropic Aerogel with Aligned Cellulose Nanofibers.
Jianwei Song,Chaoji Chen,Zhi Yang,Yudi Kuang,Tian Li,Yiju Li,Hao Huang,Iain Kierzewski,Boyang Liu,Shuaiming He,Tingting Gao,Sevket U. Yuruker,Amy Gong,Bao Yang,Liangbing Hu +14 more
TL;DR: A facile and effective top-down approach to fabricate an anisotropic wood aerogel directly from natural wood by a simple chemical treatment is reported, representing a promising direction for the fabrication of high-quality aerogels materials.
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Anisotropic, lightweight, strong, and super thermally insulating nanowood with naturally aligned nanocellulose
Tian Li,Jianwei Song,Xinpeng Zhao,Zhi Yang,Glenn Pastel,Shaomao Xu,Chao Jia,Jiaqi Dai,Chaoji Chen,Amy Gong,Feng Jiang,Yonggang Yao,Tianzhu Fan,Bao Yang,Lars Wågberg,Ronggui Yang,Liangbing Hu +16 more
TL;DR: The nanowood is lightweight yet strong, owing to the effective bonding between the aligned cellulose nanofibrils with a high compressive strength, which exceeds other thermal insulation materials, such as silica and polymer aerogels, Styrofoam, and wool.