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多种多样的人造多孔金刚石结构:具有线性天线排列的脉冲微波冷等离子体系统。

Great Variety of Man-Made Porous Diamond Structures: Pulsed Microwave Cold Plasma System with a Linear Antenna Arrangement.

作者信息

Varga Marián, Potocký Štepán, Domonkos Mária, Ižák Tibor, Babčenko Oleg, Kromka Alexander

机构信息

Institute of Physics, Czech Academy of Sciences, Cukrovarnická 10, 162 00 Prague 6, Czech Republic.

Department of Physics, Faculty of Civil Engineering, Czech Technical University in Prague, Thákurova 7, 166 29 Prague 6, Czech Republic.

出版信息

ACS Omega. 2019 May 14;4(5):8441-8450. doi: 10.1021/acsomega.9b00323. eCollection 2019 May 31.

Abstract

Synthetic diamond films are routinely grown using chemical vapor deposition (CVD) techniques. Due to their extraordinary combination of intrinsic properties, they are used as the functional layers in various bio-optoelectronic devices. It is a challenge to grow the dimensional layers or porous structures that are required. This study reviews the fabrication of various porous diamond-based structures using linear antenna microwave plasma (LAMWP) chemical vapor deposition (CVD), a low-cost technology for growing diamond films over a large area (>1 m) at low pressure (<100 Pa) and at low temperature (even at 350 °C). From a technological point of view, two different approaches, i.e., templated diamond growth using three different prestructured (macro-, micro-, and nanosized) porous substrates and direct bottom-up growth of ultra-nanoporous diamond (block-stone and dendritelike) films, are successfully employed to form diamond-based structures with controlled porosity and an enhanced surface area. As a bottom-up strategy, the LAMWP CVD system allows diamond growth at as high as 80% CO in the CH/CO/H gas mixture. In summary, the low-pressure and cold plasma conditions in the LAMWP system facilitate the growth on three-dimensionally prestructured substrates of various materials that naturally form porous self-standing diamond structures.

摘要

合成金刚石薄膜通常采用化学气相沉积(CVD)技术生长。由于其固有特性的非凡组合,它们被用作各种生物光电器件中的功能层。生长所需的尺寸层或多孔结构是一项挑战。本研究回顾了使用线性天线微波等离子体(LAMWP)化学气相沉积(CVD)制造各种多孔金刚石基结构的方法,这是一种在低压(<100 Pa)和低温(甚至在350°C)下在大面积(>1 m)上生长金刚石薄膜的低成本技术。从技术角度来看,成功采用了两种不同的方法,即使用三种不同的预结构化(宏观、微观和纳米尺寸)多孔衬底进行模板化金刚石生长以及直接自下而上生长超纳米多孔金刚石(块状和树枝状)薄膜,以形成具有可控孔隙率和增加表面积的金刚石基结构。作为一种自下而上的策略,LAMWP CVD系统允许在CH/CO/H气体混合物中高达80%的CO条件下生长金刚石。总之,LAMWP系统中的低压和冷等离子体条件有利于在各种材料的三维预结构化衬底上生长,这些材料自然形成多孔自立金刚石结构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/66cc/6648511/d84523fae7c8/ao-2019-00323h_0001.jpg

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