Development of Self-aligned Micro Wet-cell Device for Environmental Electron Microscopy Investigation of Biology and Soft matter

博士 === 國立清華大學 === 工程與系統科學系 === 101 === This paper describes a Self-Aligned Wet (SAW) cell suitable for direct-cell or bacteria incubation and observation in a wet environment inside a transmission electron microscope. This SAW cell is fabricated by a bulk-micromachining process and composed of two s...

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Bibliographic Details
Main Authors: Huang, Tsu-Wei, 黃祖緯
Other Authors: Tseng, Fang-Gang
Format: Others
Language:zh-TW
Published: 2012
Online Access:http://ndltd.ncl.edu.tw/handle/32321743676507794795
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Summary:博士 === 國立清華大學 === 工程與系統科學系 === 101 === This paper describes a Self-Aligned Wet (SAW) cell suitable for direct-cell or bacteria incubation and observation in a wet environment inside a transmission electron microscope. This SAW cell is fabricated by a bulk-micromachining process and composed of two structurally complementary counterparts (an out-frame and an in-frame), where each contain a silicon nitride film based observation window. The in- and out-frames can be self-aligned via a mechanism of surface tension from a bio-sample droplet without the aid of positioning stages. The liquid chamber is enclosed between two silicon nitride membranes that are thin enough to allow high energy electrons to penetrate while also sustaining the pressure difference between the TEM vacuum and the vapor pressure within the liquid chamber. A large field of view in a SAW cell is favored and formed from a larger sized observation window in the out-frame, which is fabricated using a unique circular membrane formation process. In this paper, we introduce a novel design to circumvent the challenges of charging/heating problems in silicon nitride that arise from interactions with an electron beam. This paper also demonstrates the TEM observations of particles dynamic, D. Radiodurans growth, fixed cell, and nanobubble nucleation in a liquid environment within a thicker chamber within a SAW cell.