| 查看: 344 | 回复: 0 | |||
nuaajsh至尊木虫 (正式写手)
|
[交流]
Call for Papers-Thermodynamics and Thermal Transport Properties in Nanomaterials
|
|
Thermodynamics and Thermal Transport Properties in Nanomaterials Call for Papers The world's demand for energy is causing a dramatic escalation of social and political unrest. With the development of modern civilizations, the expense of energy has increased progressively and the energy crisis has become a global issue. It goes without saying that sustainable energy is one of the pressing problems facing modern society with materials at the heart of its solutions. Be it high-temperature materials for efficient combustion, nanostructures for high-power density batteries, or metastructures for light harvesting, breakthroughs in energy conversion and efficiency have relied on breakthroughs in materials research. Due to their promising properties, nanomaterials have been widely used in sustainable energy, catalysis, and medical and engineering related fields and rapid progress has been made during the past decade. However, the use of nanomaterials has also led to the emergence of new problems, such as mechanical and thermodynamic instabilities and heat dissipations in nanodevices. From the atomistic point of view, size reduction will yield different bonding environments due to a larger surface-to-volume ratio. Consequently, atom vibrations will largely differ from the ones in the bulk state, which directly impacts mechanical, thermodynamic, and thermal transport properties. The changes of the aforementioned properties can be beneficial to the design of new materials in some cases, while it can degrade performances in others. For example, the reduced thermal conductivity in nanomaterials has been favorable to thermoelectric efficiency. Meanwhile, the reduced thermal conductivity is harmful for electronic chips cooling, where heat should be spread as efficiently as possible. To maximize the merit of nanomaterials, a deeper understanding of their behaviors in various environments is required. For this aim, we are calling for papers addressing nanomaterials efficiency along thermodynamics and thermal transport. Potential topics include but are not limited to the following: Materials engineering involving nanosized elements Fluids in interaction with nanocomposites Functional inorganic materials and devices Molecular electronic devices Surfaces, interfaces, and corresponding applications Thermodynamics and thermal transport Authors can submit their manuscripts through the Manuscript Tracking System at https://mts.hindawi.com/submit/journals/jnm/msct/. Submission Deadline Friday, 12 January 2018 Publication Date June 2018 Papers are published upon acceptance, regardless of the Special Issue publication date. Lead Guest Editor Shiyun Xiong, Soochow University, Jiangsu, China Guest Editors Yuxiang Ni, Southwest Jiaotong University, Sichuan, China Bin Ouyang, University of Illinois, Champaign, USA Shenghong Ju, University of Tokyo, Tokyo, Japan Sebastian Volz, Laboratoire d’Energétique Moléculaire et Macroscopique, Chatenay-Malabry, France |
» 本帖附件资源列表
-
欢迎监督和反馈:小木虫仅提供交流平台,不对该内容负责。
本内容由用户自主发布,如果其内容涉及到知识产权问题,其责任在于用户本人,如对版权有异议,请联系邮箱:xiaomuchong@tal.com - 附件 1 : call_for_papers.pdf
2017-08-28 18:34:13, 127.79 K
» 猜你喜欢
招生负责_院士团队_学生高自由度成长_擅长学生培养
已经有5人回复
温州大学招收2026年入学博士研究生(化学、材料、环境)
已经有10人回复
无机化学论文润色/翻译怎么收费?
已经有167人回复
非晶合金
已经有2人回复
院士团队-每届学生都优秀-高自由度-团队氛围好
已经有0人回复
求调剂
已经有3人回复
化工学院(学院正式调剂群+联系方式)
已经有0人回复
化工学院(学院官方群)-院士团队招生-学生自由度高-培养模式成熟高效
已经有0人回复
黑龙江大学分析化学招调剂
已经有0人回复
武汉高校国家级人才团队招收材料,化学,纺织等专业硕士调剂生
已经有26人回复
纺大化工学院(官方群)-院士团队招生-学生自由度高发展好-培养模式成熟
已经有0人回复













回复此楼
20