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Green Science Alliance Synthesized Biomass Natural Quantum Dots From Cellulose Nanofiber

Green Science Alliance Synthesized Biomass Natural Quantum Dots From Cellulose Nanofiber

绿色科学联盟从纤维素纳米纤维中合成生物质天然量子点
PR Newswire ·  08/21 08:36

KAWANISHI-CITY, Japan, Aug. 21, 2024 /PRNewswire/ -- The vision of Green Science Alliance is to offer actual cutting-edge technology for sustainable, carbon neutral society. They are also trying to replace all of the petroleum, fossil fuel-based chemicals with plant, biomass based chemical products. This time, Dr. Ryohei Mori developed quantum dots from cellulose nanofiber. He also can synthesize quantum dots from lingo cellulose nanofiber, food nanofiber, waste wood, biomass waste etc.

Green Science Alliance的愿景是为可持续发展的碳中和社会提供最先进的技术。他们还试图用植物和生物质为基础的化学产品取代所有的石油和化石燃料化学品。这一次,Ryohei Mori博士从纤维素纳米纤维中开发了量子点。他还可以从云黄胶纳米纤维、食品纳米纤维、废木材和生物质废料中合成量子点等等。

Natural Biomass Quantum Dots made from Biomass Waste
利用生物质废料制成的天然生物质量子点
Cellulose Nanofiber as Raw Materials for Quantum Dots
纤维素纳米纤维作为量子点原料

Quantum dots are extremely tiny man-made nanoparticles typically between 10 to 10000 atoms (1 to 9 nanometers) in diameter, which is smaller than 1/10000th the width of a human hair. However, the effects of this extreme small size cannot be ignored. Quantum dots are actually very powerful materials, and it is their size that gives them unique abilities, including converting light to nearly any color in the visible spectrum with very high efficiency. The Nobel Prize was awarded to the people who discovered and developed these quantum dots in 2023.

量子点是极小的人造纳米颗粒,通常直径在10到10000个原子之间(1到9纳米),比人类头发直径的1/10000还要小。然而,这种极小尺寸的效应是不可忽视的。量子点实际上是非常强大的材料,正是由于它们的尺寸赋予了它们独特的能力,包括以非常高的效率将光转换成几乎任何颜色的可见光谱。2023年,诺贝尔奖授予了发现和开发这些量子点的人们。

The electronic characteristics of quantum dots are determined by quantum confinement effect depending on their chemical composition, size, and shape. In general, bigger dots emit longer wavelengths, such as red, while smaller dots emit shorter wavelengths, such as green or blue. The tune of a quantum dot is the wavelength of light that it emits. The unique properties of quantum dot can be utilized for following application.

量子点的电子特性取决于它们的化学成分、尺寸和形状的量子限制效应。一般来说,较大的量子点发出较长的波长,例如红色,而较小的量子点发出较短的波长,例如绿色或蓝色。量子点的调谐是其发射光的波长。量子点的独特性能可以用于以下应用。

  1. Quantum dot solar cell
  2. TV display, smartphones, stable displays
  3. Security tag, security ink, counterfeit protect
  4. Sensors
  5. Quantum dot laser
  6. Quantum dot transistor
  7. Photonic crystal
  8. Bio imaging, bio marker, medical display application (cancer cell imaging, protein analysis, cell tracking)
  9. High density solid material-based memory
  10. Thermoelectric materials
  11. Quantum dot computer
  12. Visible light response type photocatalytic materials
  13. Artificial photosynthesis
  14. LED
  1. 量子点太阳能电池
  2. 电视显示器、智能手机、稳定显示
  3. 安全标签、安全墨水、防伪保护
  4. 传感器
  5. 量子点激光器
  6. 量子点晶体管
  7. 光子晶体
  8. 生物成像,生物标记,医学显示应用(癌细胞成像,蛋白质分析,细胞追踪)
  9. 基于高密度固体材料的存储器
  10. 热电材料
  11. 量子点计算机
  12. 可见光响应型光催化材料
  13. 人工光合作用
  14. LED

Green Science Alliance has been developing various types of quantum dots and quantum dot composites. Recently, they have been more focused on developing organic or biomass materials-based quantum dots since these types of quantum dots do not contain toxic metals such as lead or cadmium which is sometimes used for inorganic quantum dots.

绿色科学联盟一直在开发各种量子点和量子点复合材料。最近,他们更加关注开发基于有机或生物质材料的量子点,因为这些类型的量子点不含有毒金属,如铅或镉,这种金属有时用于无机量子点。

This time, Dr.Ryohei Mori prepared cellulose nanofiber or ligno cellulose nanofiber from cellulose, waste wood etc. and from them, synthesized these biomass natural quantum dots. It is rare research to see making quantum dots from nanofibers. Quantum dots synthesizing and manufacturing efficiency will be higher by using nanofiberized materials than its bulk counterparts. In addition, these are quantum dots composed of natural biomass 100 % components.

这次,Ryohei Mori博士从纤维素、废弃木材等材料中制备了纤维素纳米纤维或木质纤维素纳米纤维,并从中合成了这些生物质天然量子点。从纳米纤维化的材料中合成量子点的效率比其大块体对应物更高。此外,这些是由100%天然生物质组分组成的量子点。

Dr. Ryohei Mori is thinking to apply these types of cellulose, lignocellulose, waste wood, food waste and biomass natural resource materials-based quantum dots, to agriculture industry. In addition, these types of quantum dots sometimes possess anti-microbial and fertilizer effects as he previously reported.

Ryohei Mori博士计划将这些种类的纤维素、木质纤维素、废弃木材、食品废料和生物质天然资源材料制成的量子点应用于农业行业。此外,这些类型的量子点有时具有抗菌和肥料效果,作者之前也进行了报道。

These types of biomass natural quantum dots can be regarded as carbon neutral, sustainable and environmentally friendly quantum dots since they are made from cellulose, waste wood, biomass waste, agricultural waste materials etc.

由于这些量子点是由纤维素、废弃木材、生物质废料、农业废料等制成的,因此可以将这些类型的生物质天然量子点视为碳中性、可持续和环保的量子点。

Contact:
Ryohei Mori
+81727598501
[email protected]

联系方式:
森亮平
+81727598501
[email protected]

SOURCE Green Science Alliance Co., Ltd.

来源:Green Science Alliance Co.,Ltd.

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