《Droplet》

作品数:79被引量:41H指数:4
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《Droplet》
主办单位:吉林大学
最新期次:2024年4期更多>>
发文主题:DROPLETBUBBLESURFACESLIQUIDBUBBLES更多>>
发文领域:理学一般工业技术自动化与计算机技术电气工程更多>>
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Skin supersoliditymatters the performance and functionality of water droplets
《Droplet》2024年第4期1-9,共9页Chang Q.Sun Yong Zhou Hengxin Fang Biao Wang 
Natural Science Foundation of Guangdong Province,Grant/Award Number:2024A1515011094;National Natural Science Foundation of China,Grant/Award Numbers:12304243,12150100。
Even more fascinating than its bulk parent,a water droplet possesses extraordinary catalytic and hydro-voltaic capability,elastic adaptivity,hydrophobicity,sensitivity,thermal stability,etc.,but the underlying mechani...
关键词:PERFORMANCE SOLID BONDING 
DropletMask: Leveraging visual data for droplet impact analysis
《Droplet》2024年第4期10-20,共11页Chuanning Zhao Youngjoon Suh Yoonjin Won 
the support from the National Science Foundation(award number 2045322).
Machine learning-assisted computer vision represents a state-of-the-art technique for extracting meaningful features from visual data autonomously.This approach facili-tates the quantitative analysis of images,enablin...
关键词:VISUAL IMPACT utilize 
Programmable curvilinear self-propelling of droplets without preset channels
《Droplet》2024年第4期21-28,共8页Shile Feng Yongping Hou Yongmei Zheng 
supported by the National Natural Science Foundation of China(22275008);the Aeronautical Science Foundation of China(2020Z030051001);the National High-Level Talents Special Support Program,the Outstanding Youth Natural Science Foundation of Liaoning Province(2022-YQ-11);the Liaoning Revitalization Talents Program(XLYC2203049);the National Natural Science Foundation of China(52005075);Dalian Youth Science and Technology Star Project.
Curvilinear self-propelling of droplets has attracted great interest in the past few decades due to their irreplaceable roles in many areas.Conventional understanding is that a droplet moves only along a preset channe...
关键词:effect curvilinear replace 
A facile method to fabricate cell-laden hydrogel microparticles of tunable sizes using thermal inkjet bioprinting
《Droplet》2024年第4期29-38,共10页Ratima Suntornnond Wei Long Ng Viktor Shkolnikov Wai Yee Yeong 
NTU Presidential Postdoctoral Fellowship;RIE2020 Industry Alignment Fund—Industry Collaboration Projects。
This study investigates the application of a drop-on-demand(DOD)thermal inkjet(TIJ)-based bioprinting system for the fabrication of cell-laden hydrogel microparticles(HMPs)with tunable sizes.The TIJ bioprinting techni...
关键词:printing THERMAL SIZES 
Electro-coalescence of heterogeneous paired-droplets under AC electric field
《Droplet》2024年第4期39-47,共9页Zhi Tao Weidong Fang Haiwang Li Shuai Yin Tiantong Xu Teckneng Wong Yi Huang 
supported by National Key Research and Development Program of China(2022YFB3404600);funded by the Program for National Natural Science Foundation of China(nos.52006005 and 12302362);a scholarship under the State Scholarship Fund(no.202306020185);the Academic Excellence Foundation of BUAA for PhD Students.
Controllable droplet coalescence exhibits unique advantages and intriguing prospect in chemical synthesis and biological engineering.Current researches focusing on the droplets of the same physics are,however,limited ...
关键词:COALESCENCE LINKING PROPERTY 
Aerodynamic breakup of emulsion droplets in airflow
《Droplet》2024年第4期48-54,共7页Zhikun Xu Jinzhao Liu Houpeng Zhang Tianyou Wang Zhizhao Che 
supported by the National Natural Science Foundation of China(grant Nos.51920105010 and 51921004).
Aerodynamic breakup refers to the process where large droplets are fragmented into small droplets by the aerodynamic force in airflow,which plays a vital role in fluid atomization and spray applications.Previous resea...
关键词:EMULSION VISCOSITY SIZES 
Icephobic materials and strategies:From bio-inspirations to smart systems
《Droplet》2024年第3期1-26,共26页Xinlin Li Yan Liu Zhichun Zhang Yanju Liu Jinsong Leng 
National Natural Science Foundation of China,Grant/Award Number:12102105;China Postdoctoral Science Foundation,Grant/Award Number:2021M690834;Postdoctoral Science Foundation of Heilongjiang Province,Grant/Award Number:LBH-Z21156;Foundation for Innovative Research Groups of the National Natural Science Foundation of China,Grant/Award Number:52021003。
Unwanted ice formations may cause severe functional degradations of facilities and also have a negative impact on their lifespans.Avoiding and removing ice accumula-tion is always a hot topic in the industrial and tec...
关键词:removing SMART summarized 
Water droplets play a role in Internet of Things applications
《Droplet》2024年第3期27-48,共22页Feng Wen Chengkuo Lee 
Funding information Agency for Science,Technology and Research(A*STAR),Grant/Award Number:A18A5b0056;Reimagine Research Scheme(RRSC),Grant/Award Numbers:A-0009037-02-00,A0009037-03-00,A-0009454-01-00;Advanced Research and Technology Innovation Centre(ARTIC),Grant/Award Number:A-0005947-20-00;Ministry of Education(MOE),Grant/Award Number:A-0009520-01-00。
Water droplets help life in nature survive,thrive,and evolve.With water droplet serv-ing as one of the indispensable elements in the Internet of Things(IoT),many droplet-oriented technologies,such as microfluidics,dro...
关键词:IOT utilize FABRICATION 
Deposition of shear-thinning viscoelastic fluids by an elongated bubble in a circular channel regarding the weakly elastic regime
《Droplet》2024年第3期49-56,共8页SungGyu Chun Zhengyu Yang Jie Feng 
American Chemical Society Petroleum Research Fund,Grant/Award Number:61574-DNI9。
Thin-film deposition of fluids is ubiquitous in a wide range of engineering and biological applications,such as surface coating,polymer processing,and biomedical device fabri-cation.While the thin viscous film deposit...
关键词:film WEAKLY BUBBLE 
Magnetic nanofluid-based liquid marble for a self-powered mechanosensation
《Droplet》2024年第3期57-64,共8页Manhui Chen Ziwei Liu Yike Li Shanfei Zhang Peng Chen Pengyu Zhang Bin Su 
National Natural Science Foundation of China,Grant/Award Number:52375336。
Magnetic nanofluid possesses the characteristic of interfering with the propagation of the magnetic field,endowing it with the sensing property in motion.However,the residual adhesion of magnetic nanofluid as it flows...
关键词:WEAR FLUID PROPERTY 
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