Kumar Nirmal, Biswas Krishanu
Department of Material Science and Engineering, Indian Institute of Technology Kanpur, Kanpur 208016, India.
Rev Sci Instrum. 2015 Aug;86(8):083903. doi: 10.1063/1.4929325.
The successful preparation of free standing metal nanoparticles with high purity in bulk quantity is the pre-requisite for any potential application. This is possible by using ball milling at cryogenic temperature. However, the most of ball mills available in the market do not allow preparing high purity metal nanoparticles by this route. In addition, it is not possible to carry out in situ measurements of process parameters as well as diagnostic of the process. In the present investigation, we present a detailed study on the fabrication of a cryomill, which is capable of avoiding contaminations in the product. It also provides in situ measurements and diagnostic of the low temperature milling process. Online monitoring of the milling temperature and observation of ball motion are the important aspects in the newly designed mill. The nanoparticles prepared using this fabricated mill have been found to be free standing and also free from contaminations.
大量制备高纯度的独立金属纳米颗粒是任何潜在应用的先决条件。通过在低温下使用球磨可以实现这一点。然而,市场上大多数现有的球磨机都无法通过这种方法制备高纯度的金属纳米颗粒。此外,无法对工艺参数进行原位测量以及对工艺进行诊断。在本研究中,我们对一种低温球磨机的制造进行了详细研究,该球磨机能够避免产品受到污染。它还提供低温研磨过程的原位测量和诊断。新设计的球磨机的重要方面是对研磨温度的在线监测和对球运动的观察。使用这种制造的球磨机制备的纳米颗粒已被发现是独立的且无污染的。