• <abbr id="ck0wi"><source id="ck0wi"></source></abbr>
    <li id="ck0wi"></li>
  • <li id="ck0wi"><dl id="ck0wi"></dl></li><button id="ck0wi"><input id="ck0wi"></input></button>
  • <abbr id="ck0wi"></abbr>
  • <li id="ck0wi"><dl id="ck0wi"></dl></li>
  • Home >

    New Material: As Thin As Hair, Semiconductor Fiber Can "Weave" Cloth

    2024/2/2 16:33:00 0

    Semiconductor Fibre

    ?
    Photoelectric sensing cloth 13.5m long, 0.6m wide and 1mm thick

    ?

    In a green field, two researchers from Nanyang Technological University in Singapore showed a piece of white cloth 13.5 meters long, 0.6 meters wide and 1 mm thick. This plain looking cloth is actually not ordinary. It is a piece of photoelectric sensing cloth, which is "woven" from fiber materials as thin as hair. Hats and clothes made of the cloth are expected to replace smart devices such as mobile phones, tablet computers and smart watches.

    On February 1, the international joint team led by Wei Lei, a professor of Nanyang Technological University, published a paper in Nature, introducing how this cloth "woven" with super long continuous high-quality silicon germanium fiber material came out.

    Look for "flexible" materials

    Making brittle materials soft and even able to weave clothes is one of the research directions of Wei Lei's team.

    "Today's mobile phones, computers, smart watches and other devices can not be made without silicon materials. Before silicon materials were favored, germanium was a classic material used to make the first transistor in history." Wang Zhixun, the co first author of the paper and a postdoctoral researcher at Nanyang Technological University, introduced that these two materials have rich natural reserves and excellent electrical performance, But they are brittle materials that are "better broken than destroyed", and chips made of them are very easy to break.

    It has been found that although inorganic semiconductor materials represented by silicon and germanium have become indispensable key materials for chip manufacturing, the intrinsic brittleness of these semiconductors has brought challenges to material scientists under the new trend of flexibility in the electronic industry.

    In order to make these semiconductor materials "flexible, flexible and easy to use", in recent years, the international academic community has proposed some solutions to reduce dimensions.

    Wang Zhe, a professor of Jilin University who participated in the research, explained that reducing dimensions means using silicon "points" (zero dimensional nano silicon) with extremely small three-dimensional dimensions, which can be considered as zero dimensional morphology, distributed on flexible substrates in the form of arrays, forming a soft and hard cross-linked network to achieve the flexibility of brittle and hard materials; Or reduce the thickness of the wafer and passivate the mechanical damage, so as to obtain a silicon film with planar (two-dimensional nano silicon) morphology that can be bent.

    "At present, there are relatively few academic studies on one-dimensional (one-dimensional nano silicon) semiconductor fibers, mainly because of the extremely difficult preparation." Wei Lei said that the key challenge is how to continuously manufacture crack free semiconductor fibers with considerable length in large scale and high output.

    Woven photoelectric sensor cloth comes out

    Although scientists have found the micro pull-down method and other crystal growth methods starting from the melt, the preparation of semiconductor fibers still faces some major problems.

    Wang Zhixun introduced that the fused core hot drawing method is a method of manufacturing multi material fibers by slightly modifying the method of producing glass fibers. This method has the characteristics of low cost, high speed, long fiber, etc. Its fiber drawing speed can reach tens of meters or even hundreds of meters per minute, and the drawing length of a single fiber can reach kilometers. However, semiconductor fibers produced by fused core hot drawing often have defects such as uneven shape, frequent core fracture, etc., which limit their practical application.

    "To solve the production problem of semiconductor fiber, the hot core drawing method is a potential method, but it needs to fundamentally understand the defect generation mechanism and solve the problem from the source." Zhang Qichong, a researcher at the Suzhou Institute of Nanotechnology and Nanobionics, Chinese Academy of Sciences, who participated in the research, told the China Science Daily that team members combined their own background advantages, Breaking through the traditional thinking, starting from basic science and combining with experimental verification, the different physical and chemical processes in the fused core hot drawing method are summarized in stages, and the key fluid and solid mechanics problems in fiber preparation are clarified.

    From the establishment of the theoretical model to the successful drawing of the semiconductor fiber, the international joint team verified the systematic law of the fused core hot drawing method, and demonstrated the daily application of the braided photoelectric sensor cloth based on the semiconductor fiber. "This kind of sensing cloth can be sewn into a hat, a garment, or attached to a complex shaped surface in the form of a single fiber (one-dimensional nano silicon) to achieve a variety of practical applications in extreme environments such as continuous environmental light monitoring, indoor optical communication, health management and even deep-sea wireless communication." Chen Ming, associate researcher of the Shenzhen Institute of Advanced Technology of the Chinese Academy of Sciences, who participated in the research, said.

    "Hair" has great potential

    Silicon and germanium are mature and widely used representative materials in the electronic industry. The semiconductor fiber made of them has an important advantage - it can be compatible with the existing technology.

    Zhang Qichong said that photoelectric sensing is only a small part of the application of this silicon germanium fiber material, which has a broader application prospect. In the future, solar cells, temperature pressure and other signal sensing, data storage, and even integrated circuits and microprocessors may all be integrated into this "hair" and woven into daily clothes to improve people's quality of life.

    "Now, we have realized the large-scale production of high-quality silicon and germanium semiconductor fiber materials in the laboratory, but we still face challenges to achieve a wider application." Wei Lei introduced that from the fiber morphology, the current shape is single, and different devices may need different shapes or fibers with certain internal structures in practical applications; From the perspective of materials themselves, it is necessary to further explore the fibrosis preparation of the third and fourth generation semiconductor materials.

    Zhang Qichong revealed that in the future, the joint research team will further study multi-functional fiber materials to jointly solve the problems in production and preparation, so that people can carry intelligent devices like wearing close fitting clothes.

    • Related reading

    New Material: Transformed Bacteria Eat Plastic And Spit Out "Spider Silk"

    Material chemical industry
    |
    2024/1/29 15:20:00
    1

    New Materials: Understand The Process Of Scientists Converting Carbon Dioxide Into Carbon Nanofibers

    Material chemical industry
    |
    2024/1/29 15:15:00
    5

    New Material: Research Shows That Genetic Material Of Crustaceans Can Be Used To Make Silk

    Material chemical industry
    |
    2024/1/15 12:53:00
    0

    New Material: New Fiber Mimicking Polar Bear Pore Hair Keeps Warm Like Down

    Material chemical industry
    |
    2024/1/15 12:50:00
    4

    New Material: Catalytic Combination Converts Carbon Dioxide Into Solid Carbon Nanofibers

    Material chemical industry
    |
    2024/1/13 12:36:00
    2
    Read the next article

    Shao Yanfeng Of Red Bean Group: All Ordinary Jobs Can Create Extraordinary Achievements

    Hongdou Group is a pioneer in high-quality development of "three selfs and six modernizations" - Shao Yanfeng: All ordinary jobs can create extraordinary achievements Ideals and beliefs are the calcium of spirit. Every outstanding party member in the "three self and six modernizations" pioneer of Red Bean Group practices the power of example with his own practical actions. They interpret their original mission with responsibility and responsibility, and their ideals and beliefs a

    主站蜘蛛池模板: 医生好大好硬好爽好紧| 成人国产欧美精品一区二区| 国产精品20p| 亚洲另类专区欧美制服| 2021乱理片宅它网| 欧美日韩国产在线人成| 国色天香精品一卡2卡3卡| 亚洲精品无码不卡| 99久久99久久久精品久久| 波多野结衣女教师| 国内精品一区二区三区在线观看| 亚洲男人天堂2022| 3d动漫精品啪啪一区二区免费| 欧美性猛交xxxx乱大交3| 国产精品久久国产精品99盘| 亚洲啪啪综合AV一区| 欧美深夜福利视频| 日韩在线观看中文字幕| 国产久热精品无码激情| 中文字幕乱码无线码在线| 精品国产一区二区三区久久| 天天影院成人免费观看| 亚洲精品91在线| 2018国产大陆天天弄| 最近高清中文在线字幕在线观看| 国产成人精品一区二三区在线观看 | 国产亚洲sss在线播放| 中文精品久久久久国产网站| 精品国产日韩亚洲一区91| 天天操天天射天天爽| 亚洲欧美中文日韩欧美| 久久久久久久久人体| 日本不卡中文字幕| 全彩acg★无翼乌火影忍者| 99久久人人爽亚洲精品美女| 欧美性色欧美a在线播放| 国产女人18一级毛片视频| 中文天堂在线www| 波多野结衣厨房被强电影| 国产真实伦实例| 中文字幕在线播|