Search Results - "Mao, Jiang‐Wei"
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Bioinspired Superhydrophobic Swimming Robots with Embedded Microfluidic Networks and Photothermal Switch for Controllable Marangoni Propulsion
Published in Advanced functional materials (01-02-2023)“…Chemical Marangoni propulsion enables dynamic and untethered motion by generating surface tension gradient through chemical release, thereby having great…”
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Miniature optoelectronic compound eye camera
Published in Nature communications (26-09-2022)“…Inspired by insect compound eyes (CEs) that feature unique optical schemes for imaging, there has recently been growing interest in developing optoelectronic…”
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3
Bioinspired Soft Robots Based on the Moisture‐Responsive Graphene Oxide
Published in Advanced science (01-05-2021)“…Graphene oxide (GO), which has many oxygen functional groups, is a promising candidate for use in moisture‐responsive sensors and actuators due to the strong…”
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4
Broad‐Bandwidth Micro‐Diffractive Optical Elements
Published in Laser & photonics reviews (01-03-2022)“…Thin, lightweight micro‐diffractive optical elements (M‐DOEs) are of great significance to integrated optics. However, the narrow working bandwidth of M‐DOEs…”
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A Conformal Active-Material Loading Strategy for Designing High-Performance Planar Microsupercapacitors
Published in IEEE electron device letters (01-10-2023)“…Microsupercapacitors (MSCs) show promise for use in wearable electronics for biomedical, consumer, and military applications. However, the development of…”
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6
Carnivorous plants inspired shape-morphing slippery surfaces
Published in Opto-Electronic Advances (2023)“…Carnivorous plants, for instance, Dionaea muscipula and Nepenthes pitcher plant, inspired the innovation of advanced stimuli-responsive actuators and…”
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7
Laser Fabrication of Graphene-Based Electronic Skin
Published in Frontiers in chemistry (27-06-2019)“…Graphene is promising for developing soft and flexible electronic skin. However, technologies for graphene processing is still at an early stage, which limits…”
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Laser Programmable Patterning of RGO/GO Janus Paper for Multiresponsive Actuators
Published in Advanced materials technologies (01-11-2019)“…Graphene oxide (GO) with tunable physical/chemical properties is a versatile material for smart bimorph actuators. Using GO or its derivatives (e.g., reduced…”
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Facile Fabrication of High-Performance Humidity Sensors by Flash Reduction of GO
Published in IEEE sensors journal (15-08-2017)“…Graphene is a promising sensing material that has been widely used for high-performance sensors. However, the development of graphene-based sensing device is…”
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Sunlight‐Reduced Graphene Oxides as Sensitive Moisture Sensors for Smart Device Design
Published in Advanced materials technologies (01-08-2017)“…Here, a facile fabrication of graphene‐based humidity sensors is reported for smart device design. Focused sunlight photoreduction of graphene oxide (GO) helps…”
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Biomimetic Graphene Actuators Enabled by Multiresponse Graphene Oxide Paper with Pretailored Reduction Gradient
Published in Advanced materials technologies (01-12-2018)“…The strong interaction between water molecules and graphene oxide (GO) enables moisture‐responsive graphene actuators, revealing great potential for soft…”
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12
Bioinspired Surfaces With Switchable Wettability
Published in Frontiers in chemistry (12-08-2020)“…The surface wettability of plants exhibits many unique advantages, which enhances the environmental adaptability of plants. In view of the rapid development of…”
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13
Airflow Enhanced Solar Evaporation Based on Janus Graphene Membranes with Stable Interfacial Floatability
Published in ACS applied materials & interfaces (03-06-2020)“…Solar interfacial evaporation has been recognized as a versatile energy conversion protocol for cutting-edge applications such as water treatment and power…”
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14
A “Yin”-“Yang” complementarity strategy for design and fabrication of dual-responsive bimorph actuators
Published in Nano energy (01-02-2020)“…Multi-responsive soft actuators that can convert environmental energies to mechanical works are promising for robotics. However, it currently lacks universal…”
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Heterogeneous self-healing assembly of MXene and graphene oxide enables producing free-standing and self-reparable soft electronics and robots
Published in Science bulletin (Beijing) (15-03-2022)“…[Display omitted] Self-healing materials (SHMs) with unique mechanical and electronic properties are promising for self-reparable electronics and robots…”
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Programmable deformation of patterned bimorph actuator swarm
Published in National science review (01-04-2020)“…Abstract Graphene-based actuators featuring fast and reversible deformation under various external stimuli are promising for soft robotics. However, these…”
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17
Facile fabrication of moisture responsive graphene actuators by moderate flash reduction of graphene oxides films
Published in Optical materials express (01-07-2017)“…We reported here a facile, green, and simple method to fabricate moisture-responsive graphene actuators by moderate flash reduction of graphene oxides (GO)…”
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18
Study on the Constituent Elements of Domestic General Chip Industry Technology Alliance
Published in 2018 15th International Computer Conference on Wavelet Active Media Technology and Information Processing (ICCWAMTIP) (01-12-2018)“…China's "pain of lack of core" objective facts, the party central committee is very concerned. Especially after the US sanctions on ZTE this year, everyone in…”
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Conference Proceeding -
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Broad‐Bandwidth Micro‐Diffractive Optical Elements (Laser Photonics Rev. 16(3)/2022)
Published in Laser & photonics reviews (01-03-2022)“…Micro‐Diffractive Optical Elements A general protocol for achieving broadband and high‐efficiency operation of M‐DOEs is presented in article number 2100537 by…”
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Decoration of CNTs' surface by Fe3O4 nanoparticles:Influence of ultrasonication time on the magnetic and structural properties
Published in Chinese chemical letters (01-02-2017)“…The decoration of CNTs surface by magnetic nanoparticles was achieved by an ultrasonication-assisted hydrothermal method(UAHM).The effect of ultrasonication…”
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