| 查看: 892 | 回复: 0 | |||
niwei1020木虫 (正式写手)
|
[交流]
SCI期刊钒钛纳米功能材料专辑欢迎同学和专家投稿,无APC费
|
![]() ![]() Advances in vanadium and titanium resources for high-performance materials via nanostructuring and nanoengineering (updated bms-nanotec-2023-ht-32) journal: recent patents on nanotechnology guest editor(s): wei ni introduction vanadium and titanium-based materials are ideal candidates for structural and functional materials in aerospace, biomedical engineering, optics, catalysis, energy storage and conversion etc. vanadium/titanium-based alloys, compounds and materials have a large family with different chemical compositions, dimensions, structures/morphologies, and chemical/physical/mechanical properties, which provides huge opportunities for the development of emerging applications. in this special thematic issue, the recent advances in vital and promising vanadium/titanium-based materials via nanostructuring/nanoengineering are presented. we welcome the submission of full-length/mini reviews and research articles on vanadium/titanium-based nanomaterials and nanosystems from reputable groups in the field to provide new insights and shed light on their promising applications. keywords vanadium, titanium, vanadate, titanate, oxides, compounds, alloys, mofs, nanostructures, nanostructuring, nanoengineering, nanomaterials, nanostructured materials, comprehensive utilization, energy storage and conversion, sensing, biomedical, hydrogen storage, catalysis, environmental protection, composites, nanocomposites, nanotechnology, nanobiotechnology, 3d printing, surface modification, interfaces, phases, grain boundary, crystals, doping Submission link: https://www.eurekaselect.com/cal ... l/5361/specialissue ![]() |
» 猜你喜欢
(081700)化学工程与技术-298分求调剂
已经有33人回复
0703化学求调剂
已经有7人回复
一志愿西南交大,材料专硕317求调剂
已经有3人回复
315求调剂
已经有9人回复
求调剂
已经有4人回复
293求调剂
已经有3人回复
求b区学校调剂
已经有3人回复
310求调剂
已经有3人回复
302求调剂
已经有6人回复
求调剂
已经有7人回复














回复此楼
