نتایج جستجو برای: epitaxial growth

تعداد نتایج: 824239  

Journal: :Electrochemical and Solid-State Letters 2005

Journal: :Chemical communications 2009
Shuhei Furukawa Kenji Hirai Yohei Takashima Keiji Nakagawa Mio Kondo Takaaki Tsuruoka Osami Sakata Susumu Kitagawa

Two porous coordination polymers (PCPs) with different pore surface functionality were integrated into one single crystal by face-selective epitaxial growth, leading to BAB-type block PCP crystals with the core crystal A between the second crystals B.

Journal: :Analytica chimica acta 2011
Jiang Yang Hua Xiang Li Shuai Sundaram Gunasekaran

A novel and facile approach has been developed to synthesize thin films of magnetite (Fe(3)O(4)) with epitaxial needle-like columnar grains on titanium nitride (TiN) buffered substrate using DC magnetron reactive sputtering. TiN buffer layer was first sputtered onto a substrate at 550 °C as a preferable substrate for growth following sputtering of epitaxial crystalline Fe(3)O(4) at 300 °C. The ...

2015
Zhenchao Wen Takahide Kubota Tatsuya Yamamoto Koki Takanashi

Remarkable magnetic and spin-dependent transport properties arise from well-designed spintronic materials and heterostructures. Half-metallic Heusler alloys with high spin polarization exhibit properties that are particularly advantageous for the development of high-performance spintronic devices. Here, we report fully (001)-epitaxial growth of a high-quality half-metallic NiMnSb half-Heusler a...

پایان نامه :وزارت علوم، تحقیقات و فناوری - دانشگاه سیستان و بلوچستان 1386

چکیده ندارد.

2017
Wenxing Wang Peiyuan Wang Xueting Tang Ahmed A. Elzatahry Shuwen Wang Daifallah Al-Dahyan Mengyao Zhao Chi Yao Chin-Te Hung Xiaohang Zhu Tiancong Zhao Xiaomin Li Fan Zhang Dongyuan Zhao

The low-efficiency cellular uptake property of current nanoparticles greatly restricts their application in the biomedical field. Herein, we demonstrate that novel virus-like mesoporous silica nanoparticles can easily be synthesized, showing greatly superior cellular uptake property. The unique virus-like mesoporous silica nanoparticles with a spiky tubular rough surface have been successfully ...

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