<td id="kg486"><optgroup id="kg486"></optgroup></td>
<button id="kg486"><tbody id="kg486"></tbody></button>
<li id="kg486"><dl id="kg486"></dl></li>
  • <dl id="kg486"></dl>
  • <code id="kg486"><tr id="kg486"></tr></code>
  • AI, Robotics Combine to Conduct Autonomous R&D

    Jun 29, 2020

    The "artificial chemist" could accelerate development and manufacturing of commercially desirable materials.

    233820 Web

    Researchers from North Carolina State University and the University at Buffalo have developed a technology called "Artificial Chemist," which incorporates artificial intelligence (AI) and an automated system for performing chemical reactions to accelerate R&D and manufacturing of commercially desirable materials.

    In proof-of-concept experiments, the researchers demonstrated that Artificial Chemist can identify and produce the best possible quantum dots for any color in 15 minutes or less. Quantum dots are colloidal semiconductor nanocrystals, which are used in applications such as LED displays.

    However, the researchers are quick to note that Artificial Chemist can identify the best material to meet any suite of measurable properties - not just quantum dots.

    "Artificial Chemist is a truly autonomous system that can intelligently navigate through the chemical universe," says Milad Abolhasani, corresponding author of a paper on the work and an assistant professor of chemical and biomolecular engineering at NC State. "Currently, Artificial Chemist is designed for solution-processed materials - meaning it works for materials that can be made using liquid chemical precursors. Solution-processed materials include high-value materials such as quantum dots, metal/metal oxide nanoparticles, metal organic frameworks (MOFs), and so on.

    "The Artificial Chemist is similar to a self-driving car, but a self-driving car at least has a finite number of routes to choose from in order to reach its pre-selected destination. With Artificial Chemist, you give it a set of desired parameters, which are the properties you want the final material to have. Artificial Chemist has to figure out everything else, such as what the chemical precursors will be and what the synthetic route will be, while minimizing the consumption of those chemical precursors.

    "The end result is a fully autonomous materials development technology that not only helps you find the ideal solution-processed material more quickly than any techniques currently in use, but it does so using tiny amounts of chemical precursors. That significantly reduces waste and makes the materials development process much less expensive."

    The Artificial Chemist has both a "body" for performing experiments and sensing the experimental results, and a "brain" for recording that data and using it to determine what the next experiment will be.

    For their proof-of-concept testing, Artificial Chemist’s body incorporated the automated Nanocrystal Factory and NanoRobo flow synthesis platforms developed in Abolhasani’s lab. The Artificial Chemist platform has demonstrated that it can run 500 quantum dot synthesis experiments per day, though Abolhasani estimates it could run as many as 1,000.

    The Artificial Chemist’s brain is an AI program that characterizes the materials being synthesized by the body and uses that data to make autonomous decisions about what the next set of experimental conditions will be. It bases its decisions on what it determines will most efficiently move it toward the best material composition with the desired properties and performance metrics.

    "We tried to mimic the process that humans use when making decisions, but more efficiently," Abolhasani says.

    For example, Artificial Chemist allows "knowledge transfer," meaning that it stores data generated from every request it receives, expediting the process of identifying the next candidate material it is tasked with. In other words, Artificial Chemist gets smarter and faster over time at identifying the right material.

    For their proof of concept, the researchers tested nine different policies for how the AI uses data to decide what the next experiment will be. They then ran a series of requests, each time asking Artificial Chemist to identify a quantum dot material that was the best fit for three different output parameters.

    "We found a policy that, even without prior knowledge, could identify the best quantum dot possible within 25 experiments, or about one-and-a-half hours," Abolhasani says. "But once Artificial Chemist had prior knowledge - meaning that it had already handled one or more target material requests - it could identify the optimal material for new properties in 10 to 15 minutes.

    "We found that Artificial Chemist could also rapidly identify the boundaries of materials properties for a given set of starting chemical precursors, so that chemists and materials scientists do not need to waste their time on exploring different synthesis conditions.

    "I believe autonomous materials R&D enabled by Artificial Chemist can re-shape the future of materials development and manufacturing," Abolhasani says. "I’m now looking for partners to help us transfer the technique from the lab to the industrial sector."

     

    Source: Manufacturing.net


    Copyright ? 2017, G.T. Internet Information Co.,Ltd. All Rights Reserved.
    主站蜘蛛池模板: 裴远之的原型人物是谁 | 怡红院怡春院首页| 国产亚洲欧美精品久久久| 久久精品国产免费| 天天摸日日摸人人看| 果冻传媒七夕潘甜甜在线播放| 国产精品一区视频| 亚洲av无码不卡在线播放| 久久精品国产四虎| 日韩欧美中文字幕一区二区三区| 国产成人精品无码免费看| 久碰人澡人澡人澡人澡人视频 | 日本人强jizzjizz老| 国产一级黄毛片| 久久99精品久久久久麻豆| 色偷偷亚洲第一综合| 成年美女黄网站色大免费视频 | 人妻巨大乳hd免费看| 99久久综合给久久精品| 欧美日韩视频在线第一区| 国产精品二区三区免费播放心| 国产精品免费一级在线观看| 亚洲国产成人久久综合区| 青青草原亚洲视频| 暖暖在线日本免费中文| 国产乱码一区二区三区| 中文字幕日韩亚洲| 第272章推倒孕妇秦| 处女的第一次电影| 亚洲成av人影片在线观看| 午夜性福利视频| 日本免费一区二区三区高清视频| 四虎a456tncom| eeuss影院eeuss天堂| 欧美日韩激情在线| 国产成人精品免费久久久久| 久久99精品国产麻豆不卡| 综合图区亚洲欧美另类图片 | 国产在线jyzzjyzz免费麻豆| 久久99精品久久久大学生| 疯狂做受xxxx高潮不断|