نتایج جستجو برای: nitride semiconductors

تعداد نتایج: 41330  

Journal: :Analytical sciences : the international journal of the Japan Society for Analytical Chemistry 2008
Yasuji Muramatsu Junji Iihara Toshihiko Takebe Jonathan D Denlinger

To analyze the local structure and/or chemical states of boron atoms in boron-doped diamond, which can be synthesized by the microwave plasma-assisted chemical vapor deposition method (CVD-B-diamond) and the temperature gradient method at high pressure and high temperature (HPT-B-diamond), we measured the soft X-ray emission spectra in the CK and BK regions of B-diamonds using synchrotron radia...

Journal: :Small 2016
Guixia Zhao Guigao Liu Hong Pang Huimin Liu Huabin Zhang Kun Chang Xianguang Meng Xiaojun Wang Jinhua Ye

A series of rod-like porous graphitic-carbon nitrides (short as CNs) with enhanced in-plane ordering have been fabricated through self-assembled heptazine hydrate precursors for the first time. By controlling the calcination of the preformed precursors with different temperature-rising rates, the resulted CNs (SAHEP-CNs-1) with the most ordered and least stacked graphitic planar are showing a t...

Journal: :Nano letters 2015
Elison Matioli Tomás Palacios

Room-temperature (RT) ballistic transport of electrons is experimentally observed and theoretically investigated in III-nitrides. This has been largely investigated at low temperatures in low band gap III-V materials due to their high electron mobilities. However, their application to RT ballistic devices is limited by their low optical phonon energies, close to KT at 300 K. In addition, the sh...

2016
Han Sun Yue Cao Leiyu Feng Yinguang Chen

Reducing the recombination probability of photogenerated electrons and holes is pivotal in enhancing the photocatalytic ability of graphitic carbon nitride (g-C3N4). Speeding the departure of photogenerated electrons is the most commonly used method of achieving this. To the best of our knowledge, there is no report on suppressing the recombination of photogenerated electron-hole pairs by immob...

Journal: :Scientific reports 2015
N I Verbitskiy A V Fedorov G Profeta A Stroppa L Petaccia B Senkovskiy A Nefedov C Wöll D Yu Usachov D V Vyalikh L V Yashina A A Eliseev T Pichler A Grüneis

The full exploration of the potential, which graphene offers to nanoelectronics requires its integration into semiconductor technology. So far the real-world applications are limited by the ability to concomitantly achieve large single-crystalline domains on dielectrics and semiconductors and to tailor the interfaces between them. Here we show a new direct bottom-up method for the fabrication o...

2017
Peter J. Wellmann

Power electronics belongs to the future key technologies in order to increase system efficiency as well as performance in automotive and energy saving applications. Silicon is the major material for electronic switches since decades. Advanced fabrication processes and sophisticated electronic device designs have optimized the silicon electronic device performance almost to their theoretical lim...

2015
Wenbin Li Li

KEYWORDS piezoelectricity, two-dimensional (2D) material, monochalcogenide, density functional theory (DFT) calculation ABSTRACT It is found that several layer-phase group-III monochalcogenides, including GaS, GaSe, and InSe, are piezoelectric in their monolayer form. First-principles calculations reveal that the piezoelectric coefficients of monolayer GaS, GaSe, and InSe (2.06, 2.30, and 1.46 ...

Journal: :Nature communications 2014
Kaihui Liu Liming Zhang Ting Cao Chenhao Jin Diana Qiu Qin Zhou Alex Zettl Peidong Yang Steve G Louie Feng Wang

Van der Waals coupling is emerging as a powerful method to engineer physical properties of atomically thin two-dimensional materials. In coupled graphene-graphene and graphene-boron nitride layers, interesting physical phenomena ranging from Fermi velocity renormalization to Hofstadter's butterfly pattern have been demonstrated. Atomically thin transition metal dichalcogenides, another family o...

2004
Ekmel Ozbay Kaan Guven Koray Aydin Mehmet Bayindir Klaus Von Klitzing

Photonic nanocrystals are periodic dielectric or metallic structures having photonic bands in analogy to electronic bands of semiconductors. The presence of photonic band-gaps, where the propagation of photons of certain frequencies is prohibited, and the variety of photon dispersions give rise to novel and unusual optical phenomena. Consequently, photonic crystals are now envisaged as an essen...

Journal: :Nanoscale 2015
E Xenogiannopoulou P Tsipas K E Aretouli D Tsoutsou S A Giamini C Bazioti G P Dimitrakopulos Ph Komninou S Brems C Huyghebaert I P Radu A Dimoulas

Atomically-thin, inherently 2D semiconductors offer thickness scaling of nanoelectronic devices and excellent response to light for low-power versatile applications. Using small exfoliated flakes, advanced devices and integrated circuits have already been realized, showing great potential to impact nanoelectronics. Here, high-quality single-crystal MoSe2 is grown by molecular beam epitaxy on Al...

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