Diamond and Related Materials
基本情報
DRM is a leading international journal that publishes new fundamental and applied research on all forms of diamond, the integration of diamond with other advanced materials and development of technologies exploiting diamond. The synthesis, characterization and processing of single crystal diamond, polycrystalline films, nanodiamond powders and heterostructures with other advanced materials are encouraged topics for technical and review articles. In addition to diamond, the journal publishes manuscripts on the synthesis, characterization and application of other related materials including diamond-like carbons, carbon nanotubes, graphene, and boron and carbon nitrides. Articles are sought on the chemical functionalization of diamond and related materials as well as their use in electrochemistry, energy storage and conversion, chemical and biological sensing, imaging, thermal management, photonic and quantum applications, electron emission and electronic devices. The International Conference on Diamond and Carbon Materials has evolved into the largest and most well attended forum in the field of diamond, providing a forum to showcase the latest results in the science and technology of diamond and other carbon materials such as carbon nanotubes, graphene, and diamond-like carbon. Run annually in association with Diamond and Related Materials the conference provides junior and established researchers the opportunity to exchange the latest results ranging from fundamental physical and chemical concepts to applied research focusing on the next generation carbon-based devices. http://www.diamond-conference.elsevier.com Benefits to authors We also provide many author benefits, such as free PDFs, a liberal copyright policy, special discounts on Elsevier publications and much more. Please click here for more information on our author services. Please see our Guide for Authors for information on article submission. If you require any further information or help, please visit our Support Center
CiteScore
分野 | ランク | パーセンタイル |
---|---|---|
Physics and AstronomyGeneral Physics and Astronomy |
50 / 243 | 79% |
ジャーナル統計
投稿情報
収録タイプ:
• Invited Review Article
• Invited Feature Article
関連論文
High-performance tungsten carbide electrocatalysts for the hydrogen evolution reaction
Jing Li, Bao Wang, Wei Liu
DOI: 10.1039/C9SE00853E
Electrospun hydrogels for dynamic culture systems: advantages, progress, and opportunities
M. Gregory Grewal
DOI: 10.1039/D0BM01588A
Direct arylation polycondensation towards water/alcohol-soluble conjugated polymers as the electron transporting layers for organic solar cells
Qingwu Yin, Zhenfeng Wang, Boming Xie, Fei Huang, Yong Cao
DOI: 10.1039/D1CC01128F
Strong circularly polarized luminescence of an octahedral chromium(iii) complex
Carolin Dee, Francesco Zinna, Winald R. Kitzmann, Gennaro Pescitelli, Katja Heinze, Lorenzo Di Bari, Michael Seitz
DOI: 10.1039/C9CC06909G
From zinco(ii) arsaketenes to silylene-stabilised zinco arsinidene complexes
Ernesto Ballestero-Martínez, Terrance J. Hadlington, Tibor Szilvási, Shenglai Yao, Matthias Driess
DOI: 10.1039/C8CC01928B
Electrocatalytic cleavage of lignin model dimers using ruthenium supported on activated carbon cloth
Mahlet Garedew, Daniel Young-Farhat, Souful Bhatia, Pengchao Hao, James E. Jackson
DOI: 10.1039/C9SE00912D
An improved fluorescent protein-based expression reporter system that utilizes bioluminescence resonance energy transfer and peptide-assisted complementation
Akira Takai, Keiko Yoshizawa
DOI: 10.1039/C9CC08664A
Tessellation strategy for the interfacial synthesis of an anthracene-based 2D polymer via [4+4]-photocycloaddition
Renzeng Chen, Danbo Wang, Wenbo Hao, Feng Shao, Yingjie Zhao
DOI: 10.1039/D1CC02179F
Illuminating endosomal escape of polymorphic lipid nanoparticles that boost mRNA delivery
Marco Herrera, Jeonghwan Kim, Yulia Eygeris, Antony Jozic
DOI: 10.1039/D0BM01947J
Non-aqueous neptunium and plutonium redox behaviour in THF – access to a rare Np(iii) synthetic precursor
Nickolas H. Anderson, Suzanne C. Bart, Andrew J. Gaunt, Brian L. Scott
DOI: 10.1039/C8CC02611D
