![]() who reported a simplified process of making silica aerogel by removing methanol from silica alcogel in an autoclave without using a multiple solvents exchange process. 2 Further research was stuck until the work of Cantin et al. 1 This was followed by several patents of aerogels including five US patents of Kistler himself and a few others from other researchers. In the same work, Kistler reported the synthesis of aerogels from several other materials. Kistler used the hypothesis of replacing the liquid of hydrogel with gas to obtain a porous material with no to little shrinkage and he succeeded in preparing the first silica aerogel by first making its gel followed by solvent exchange and finally drying in an autoclave. He received the Siemens Scholarship from the Siemens Foundation in 2007.ġ. He was a member of Tau Beta Pi Engineering Honor Society at the University of Nebraska Lincoln in 2008. While at Purdue University, Lin was awarded the Ross Fellowship, a four-year package to recruit outstanding PhD track students, from 2009 to 2013. Dr Lin was awarded the Big 12 Faculty Fellowship in 2016. Dr Lin has 62 publications in reputed international journals with a total impact factor of 2184. He has one Guinness World Record with his collaborators: The World's lightest material via 3D printing. Lin's most recent research interests focus on 3D printing of multifunctional aerogels for various applications, and 3D printing of carbon fiber composites. Dr Lin is an expert in the manufacturing of aerogels. Dr Lin qualification brief is MS in Industrial Engineering from University of Nebraska Lincoln, USA, PhD in Industrial Engineering, from Purdue University, USA. The Fulbright award for post-doc, and three research grants from HEC, Pakistan.ĭr Dong Lin is serving as A/Professor at the department of industrial and manufacturing systems engineering, Kansas State University. Dr Shah has received several awards including the KNU Honor scholarship for PhD, AWKUM merit scholarship for post-doc. Recently, he is working in additive manufacturing (3D printing) based materials projects, and has also submitted papers for publication in this field. Dr Shah has expertise in additive based composite materials for biomedical, environmental, and analytical applications. He has published several research publications in reputed international journals with 1031 citations. Dr Shah has vast experience in the field of fabrication, characterization, and applications of advanced materials. He has post-doctoral experience at the University of Sheffield, UK. Dr Shah holds a PhD degree in Chemical Engineering from KNU, Korea. However, to our knowledge, there is no review that specifically focuses only on magnetic aerogels, so we attempted to overview the main developments in this field and ended our study with the conclusion that magnetic aerogels are one of the emerging and futuristic advanced materials with the potential to offer multiple applications of high value.ĭr Nasrullah Shah is A/Professor at the Abdul Wali Khan University Mardan (AWKUM), Pakistan, and doing research as the Fulbright Scholar at the Kansas State University, USA. To date, several studies have been published reporting the fabrication and uses of magnetic aerogels. Considering the final use and cost, these can be fabricated from a variety of materials using different approaches. Magnetic aerogels can be used for various purposes from adsorbents to developing electromagnetic interference shielding and microwave absorbing materials, high-level diagnostic tools, therapeutic systems, and so on. Their incorporation in aerogels has certainly broadened their application area. Magnetic materials have brought innovations in the field of advanced materials.
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