Materials especially crystalline materials provide the foundation of our modern technologically driven world. The domination of materials is achieved through detailed scientific research. Advances in the techniques of growing and assessing ever more perfect crystals of a wide range of materials lie at the roots of much of today's advanced technology. The evolution and development of crystalline materials involves research by dedicated scientists in academia as well as industry involving a broad field of disciplines including biology, chemistry, physics, material sciences and engineering. Crucially important applications in information technology, photonics, energy storage and harvesting, environmental protection, medicine and food production require a deep understanding of and control of crystal growth. This can involve suitable growth methods and material characterization from the bulk down to the nano-scale.
材料,尤其是晶体材料,为我们现代技术驱动的世界提供了基础。材料的主导地位是通过详细的科学研究实现的。生长和评估各种材料的更完美晶体的技术的进步是当今许多先进技术的根源。晶体材料的演变和发展涉及学术界和工业界的专门科学家的研究,涉及广泛的学科领域,包括生物学、化学、物理学、材料科学和工程学。在信息技术、光子学、能量储存和采集、环境保护、医药和食品生产等领域的关键重要应用中,需要深入了解和控制晶体生长。这可能涉及合适的生长方法和从块体到纳米尺度的材料表征。
FIBSIMS: A review of secondary ion mass spectrometry for analytical dual beam focussed ion beam instruments
来源期刊:Progress in Crystal Growth and Characterization of MaterialsDOI:10.1016/J.PCRYSGROW.2018.10.001
Design, growth and characterization of PbTe-based thermoelectric materials
来源期刊:Progress in Crystal Growth and Characterization of MaterialsDOI:10.1016/J.PCRYSGROW.2019.04.001
Growth and characterization of two-dimensional crystals for communication and energy applications
来源期刊:Progress in Crystal Growth and Characterization of MaterialsDOI:10.1016/j.pcrysgrow.2019.100465
Mechanism for generating interstitial atoms by thermal stress during silicon crystal growth
来源期刊:Progress in Crystal Growth and Characterization of MaterialsDOI:10.1016/J.PCRYSGROW.2019.01.001
Hair growth at a solid-liquid interface as a protein crystal without cell division
来源期刊:Progress in Crystal Growth and Characterization of MaterialsDOI:10.1016/J.PCRYSGROW.2019.04.002
Preferred crystallographic orientation of nanocrystals embedded inside nanopores
来源期刊:Progress in Crystal Growth and Characterization of MaterialsDOI:10.1016/j.pcrysgrow.2019.100464