百家乐怎么玩-澳门百家乐官网娱乐城网址_网上百家乐是不是真的_全讯网888 (中国)·官方网站

CityU scientist invents novel droplet manipulation method “WRAP”

 

Precise manipulation and transportation of micro-sized droplets is a challenging task, yet crucial for biomedical and industrial applications. A research team led by a scholar from the City University of Hong Kong (CityU) has successfully developed a novel droplet manipulation method called “WRAP” which can transport droplets of different sizes and compositions by electromagnets or programmable electromagnetic fields. The research team believes that this innovative method has great potential in developing next-generation microfluidics and in the detection of respiratory droplets bearing COVID-19 and other pathogens landed on the surface.

The research team was led by Dr Yao Xi, Associate Professor from the Department of Biomedical Sciences (BMS), Jockey Club College of Veterinary Medicine and Life Sciences, at CityU. Their findings were published in the scientific journal Nature Communications, titled “Wetting ridge assisted programmed magnetic actuation of droplets on the ferrofluid-infused surface”.

Flexible and swift transportation of micro-sized droplets on a solid surface with great precision had long been a great challenge to scientists. When compared with other actuation methods based on light, heat, or surface charge, magnetic actuation has many advantages such as rapid response, large driving force and programmable control. However, one of the key issues in the traditional magnetic actuation method is the contamination caused by adding magnetic particles into the droplets, which greatly limits its applications.

“Successful droplet manipulation methods should allow for strong, reversible, and freely programmable droplet actuation while imposing as little restrictions as possible on droplet composition and sizes,” pointed out by Dr Yao. Aiming at overcoming these challenges, the research team led by Dr Yao and his collaborators has successfully developed a “magnetic additive-free” wetting ridge assisted programmed (WRAP) magnetic actuation method.

The research team achieved the breakthrough by using ferrofluid. Ferrofluid is a liquid that contains suspended micro, iron particles (ferromagnetic particles) in a solvent. It becomes highly magnetised in the presence of a magnetic field. 

droplet wrap
Magnetic actuation of additive-free droplets on a ferrofluid-infused slippery surface. The actuation force is provided by the ferromagnetic wetting ridge that spontaneously forms around the deposited droplet.
Credit: DOI number:10.1038/s41467-021-27503-1

Firstly, the team infused ferrofluid into a porous surface. When droplets landed on the porous surface, the ferrofluid automatically “wrapped” the droplets because of the surface tension, and hence formed the magnetically responsive ferrofluid ridges surrounding the droplets due to capillary forces.

When an external electromagnetic field was applied, the ferrofluid ridges were magnetically attracted, moving together with the droplets based on the magnetic field direction. So the transportation path could be controlled programmatically through the design of the external magnetic field.

Experiment showing the actuation of micro-sized droplets sprayed on the ferrofluid-infused surface when the electromagnet (beneath center of the surface) was turned on. Credit: DOI number: 10.1038/s41467-021-27503-1

Dr Yao explained that the WRAP actuation method was applicable as long as there is a wetting ridge formed. It means that the transportation of droplets is no longer limited by droplet size, surface tension or composition.

In the experiments, the research team used electromagnets to precisely and programmatically control the droplet generation, movement, merging and mixing. “These WRAP based typical applications of droplet manipulation is promising in the development of new digital microfluidics,” said Dr Yao.

Experiment showing the guided movement (a “M” path) of a single droplet under the programmed control of a series of electromagnets. Credit: DOI number: 10.1038/s41467-021-27503-1

droplet wrap
Demonstration of potential of WRAP method in enhancing the sensitivity of biomedical analysis. Without magnetic actuation, some microdroplets randomly coalesce, and showed fluorescence signals that were randomly distributed and were barely above noise level (left image). With magnetic actuation, all the microdroplets coalesce to form a lattice pattern, showing strong and regularly distributed fluorescence signals (right image).
Credit: DOI number: 10.1038/s41467-021-27503-1

The team also discovered a great signal enhancement in bioanalysis after the collection and merging of many micro-sized droplets into the big ones by using the WRAP method. As the WRAP method can control the movement of lots of micro-sized respiratory droplets from the patients and merge them into a bigger testing sample, it can potentially facilitate the detection of pathogens such as coronavirus from respiratory droplets landed on a surface by combining with advanced biochemical tests like immunoassays and nucleic acid assays. Dr Yao believed that in this way, the accuracy (or sensitivity) of the tests can be enhanced.

dr yao xi
Dr Yao Xi, Associate Professor from the Department of Biomedical Sciences (BMS), CityU

Dr Yao Xi from BMS, Professor Frieder Mugele from the University of Twente, and Dr Gao Jun from the Chinese Academy of Sciences are the paper’s corresponding authors. The first authors are Dr Zhang Jianqiang, PhD graduate, and Miss Wang Xuejiao, PhD student, from CityU’s BMS.

This research was supported by the Research Grant Council of Hong Kong, CityU, and Shenzhen Basic Research Program.

DOI number: 10.1038/s41467-021-27503-1

Newsletter Subscription: Research 

* indicates required

Areas of Interest 

Contact Information

Back to top
赢家百家乐的玩法技巧和规则 | 赌博百家乐秘籍| 威尼斯人娱乐网上百家乐| 祁门县| 开心8百家乐现金网| 百家乐出庄的概率| 马关县| 百家乐天天赢钱| 娱乐城送| 百家乐官网分析仪有真的吗| 网上百家乐赌博经历| 合肥百家乐官网赌博机| 大杀器百家乐学院| 顶级赌场官方下载| 玩百家乐官网游戏的最高技巧| 大发888官方下载168| 大三元百家乐官网的玩法技巧和规则| 大发888游戏平台dafa888 gw| 91百家乐官网的玩法技巧和规则| 德州扑克边池| 金宝博百家乐娱乐城| 百家乐官网巴黎| 湄潭太阳城房价| 百家乐官网轮盘| 澳门百家乐网40125| 百家乐官网顶尖高手| 大发888投注| 百家乐视频台球下载| 视频百家乐官网破解| 大发888真人真钱游戏| 王子百家乐官网的玩法技巧和规则 | 百家乐大转轮真人视讯| 百家乐官网网络赌博地址| 大发888下载娱乐场| 百家乐现金网信誉排名| 博彩百家乐官网的玩法技巧和规则 | 欢乐谷百家乐官网的玩法技巧和规则| 资源县| 大发888论坛爱好| 百家乐庄闲的比例| 百家乐官网tt娱乐场开户注册 |