Selected Papers from the China Rare Earth Society 2020 Annual Conference and Jiangxi (Ganzhou) Rare Earth Resources Green Development and Efficient Utilization Conference (Session 9—Thermal Protection Materials)

A special issue of Coatings (ISSN 2079-6412). This special issue belongs to the section "Selected Papers from International Conferences and Workshops".

Deadline for manuscript submissions: closed (31 January 2021) | Viewed by 2269

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Guest Editor
School of Materials Science and Engineering, Tianjin University, Tianjin 300072, China
Interests: thermal barrier coatings; high-temperature corrosion
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Guest Editor
Silicate Center, School of Materials Science and Engineering, Wuhan University of Technology, Wuhan, China
Interests: thermal barrier coating; environmental barrier coating; material synthesis; nano material

Special Issue Information

Dear Colleagues,

This Special Issue will present selected papers from the China Rare Earth Society 2020 Annual Conference and Jiangxi (Ganzhou) Rare Earth Resources Green Development and Efficient Utilization Conference (Session 9—Thermal Protection Materials).

In order to carry out high-level academic and technical exchange in the field of rare earth; lead the development of the rare earth discipline; build an exchange platform of production, learning, research, and application; strengthen the innovation of rare earth science and technology; promote the popularization, transformation, and industrialization of rare earth scientific and technological achievements; and help the development of rare earth industry in Ganzhou City, the China Rare Earth Society, Jiangxi Science and Technology Association, and Ganzhou Municipal People’s Government organized the “China Rare Earth Society 2020 Annual Conference and Jiangxi (Ganzhou) Rare Earth Resources Green Development and Efficient Utilization Conference” (http://www.cs-re.org.cn/meeting/2020CSRE/).

This conference served as a forum for exchange; showcased the latest progress and achievements in rare earth basic research, applied research, and industrialization; and promoted communication and contact between academic and industrial circles. Discussions were held on the research progress in rare earth development and environmental protection, rare earth materials, and rare earth application, both presenting the latest research results and reflecting the technical needs of enterprises. The areas of basic research, material preparation/processing technology, application and performance evaluation, and analysis and testing technology were all addressed.

The meeting awarded rare earth science and technology awards, invited well-known experts to make conference reports, conducted academic branch meeting report exchange and wall newspaper exchange, held the “High-Level Forum on Rare Earth Resources Green Development and Efficient Utilization” session, and organized meetings for the promotion of rare earth science and technology achievements. At the same time, the “2020 Rare Earth Science and Technology Innovation and Application” exhibition was held, including the “Advanced Experimental Technology Service Exhibition” and the “Rare Earth Development and Application Technology Innovation Exhibition”.

The topics of Session 9—Thermal Protection Materials were as follows:

  • Thermal Barrier Coatings;
  • Environmental Barrier Coatings;
  • Infrared Radiation Materials;
  • Coating Materials;
  • Coating Failure Analysis;
  • Coating Preparation Technology.

Dr. Lei Guo
Prof. Dr. Xueqiang Cao
Guest Editors

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Published Papers (1 paper)

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Research

4 pages, 14755 KiB  
Communication
Biodegradable Polylactide/Rare Earth Complexes in Light Conversion Agricultural Films
by Yuanping Jiang, Chunpei Yan, Han Zhang, Miaomiao Wu, Shaodi Zheng, Yunxiu Zhang and Liyang Xu
Coatings 2021, 11(2), 139; https://doi.org/10.3390/coatings11020139 - 27 Jan 2021
Cited by 12 | Viewed by 1911
Abstract
Rare earth luminescent material CaAlSiN3:Eu2+ (CEu) was applied and modified with (3-Aminopropyl) triethoxysilane (KH550) to obtain two types of rare earth conversion agents, CEu and KH550-modified CEu (KCEu). Two kinds of polylactide (PLA) conversion films were successfully prepared through solution [...] Read more.
Rare earth luminescent material CaAlSiN3:Eu2+ (CEu) was applied and modified with (3-Aminopropyl) triethoxysilane (KH550) to obtain two types of rare earth conversion agents, CEu and KH550-modified CEu (KCEu). Two kinds of polylactide (PLA) conversion films were successfully prepared through solution blending. The results showed that the addition of rare earth complex increases the crystallinity of PLA. More importantly, both PLA/CEu and PLA/KCEu films showed good red-light conversion ability, which can accelerate plant growth. Full article
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