نتایج جستجو برای: electronic conductivity

تعداد نتایج: 272024  

Journal: :Acta Crystallographica Section A Foundations and Advances 2014

2015
Sangwook Lee Fan Yang Joonki Suh Sijie Yang Yeonbae Lee Guo Li Hwan Sung Choe Aslihan Suslu Yabin Chen Changhyun Ko Joonsuk Park Kai Liu Jingbo Li Kedar Hippalgaonkar Jeffrey J. Urban Sefaattin Tongay Junqiao Wu

Black phosphorus attracts enormous attention as a promising layered material for electronic, optoelectronic and thermoelectric applications. Here we report large anisotropy in in-plane thermal conductivity of single-crystal black phosphorus nanoribbons along the zigzag and armchair lattice directions at variable temperatures. Thermal conductivity measurements were carried out under the conditio...

We describe how to obtain electronic transport properties of disordered graphene, including the tight binding model and nearest neighbor hopping. We present a new method for computing, electronic transport wave function and Greens function of the disordered Graphene. In this method, based on the small rectangular approximation, break up the potential barriers in to small parts. Then using the f...

Mahdi Moghimi Zand Majid Baniassadi, Mehdi Tafazoli Mohammad Riazat Mohsen Mazrouie

In the present study, the effect of porosity on the cathode microstructure (50:50 wt. % LSM: YSZ) of a Solid Oxide Fuel Cell (SOFC) has been examined. A 3-D finite element method for Mixed Ionic and Electronic Conducting Cathodes (MIEC) is presented to study the effects of porosity on cell performance. Each microstructure was realized using the Monte Carlo approach with the isotropic type o...

2015
Stevo K. Jaćimovski Maša Bukurov Jovan P. Šetrajčić Dejan I. Raković

The study of graphene thermal conductivity is of great importance, as its anomalous thermal and electrical conductivities (the largest among the all known materials so far) provide very good perspectives for graphene-based nanoelectronics devices. Thermal conductivity of graphene is phonon-based, since its electronic-based thermal conductivity represents less than 1% of the total thermal conduc...

Journal: :Nature 2016
You Zhou Xiaofei Guan Hua Zhou Koushik Ramadoss Suhare Adam Huajun Liu Sungsik Lee Jian Shi Masaru Tsuchiya Dillon D Fong Shriram Ramanathan

Fuel cells convert chemical energy directly into electrical energy with high efficiencies and environmental benefits, as compared with traditional heat engines. Yttria-stabilized zirconia is perhaps the material with the most potential as an electrolyte in solid oxide fuel cells (SOFCs), owing to its stability and near-unity ionic transference number. Although there exist materials with superio...

2016
J. Dyre

The physics of ac hopping conduc2ivity in disordered solids is discussed in the light of a recently proposed model. Several new comments are made. One of the most interesting facts about conductivity in disordered solids is the surprising similarity between ionic and electronic conductivity. The same kinds of non-linearities in strong electric fields are observed, and ionic and electronic condu...

2015
Hisashi Kozuka Kazushige Ohbayashi Kunihito Koumoto

A systematic study of La-based perovskite-type oxides from the viewpoint of their electronic conduction properties was performed. LaCo0.5Ni0.5O3±δ was found to be a promising candidate as a replacement for standard metals used in oxide electrodes and wiring that are operated at temperatures up to 1173 K in air because of its high electrical conductivity and stability at high temperatures. LaCo0...

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