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dc.contributor.author吴承臻zh_TW
dc.contributor.author郑云谦zh_TW
dc.contributor.authorWu, Cheng-Chenen_US
dc.contributor.authorCheng, Yun-Chienen_US
dc.date.accessioned2018-01-24T07:38:48Z-
dc.date.available2018-01-24T07:38:48Z-
dc.date.issued2016en_US
dc.identifier.urihttp://etd.lib.nctu.edu.tw/cdrfb3/record/nctu/#GT070351088en_US
dc.identifier.urihttp://hdl.handle.net/11536/139992-
dc.description.abstract传统蛋白质(或酶)嫁接成长于基材,常使用化学共价键合成法,但其缺点为步骤繁琐,需配置化学溶液,易造成环境污染,及对人体有害,且该化学合成法需耗费多时。相关研究指出,使用大气电浆聚合沉积蛋白质薄膜的方式,操作简单,成膜反应时间短,既环保又省时。
本论文的目的为应用介电质放电平板式大气电浆,沉积脂肪酶薄膜于矽晶圆基材(第1阶段研究: 脂肪酶薄膜/矽晶圆),探讨工作电压(kV)、工作频率(kHz) 及陶瓷介电质板厚度(mm) 对脂肪酶薄膜特性之研究。使用傅利叶红外光谱(FTIR)进行脂肪酶薄膜定性分析,扫描式电子显微镜 (SEM) 分析薄膜影像,EDS分析薄膜元素成份,及α-step量测薄膜厚度。研究结果显示,陶瓷介电质板厚度为1 mm,分别改变工作电压(3 kV, 4 kV) 及 工作频率(4 kHz, 8 kHz),显示使用3 kV及4 kHz,脂肪酶薄膜经FTIR分析有较强的波峰,有较佳的蛋白质讯号。但是陶瓷介电质板厚度为1 mm,所沉积的脂肪酶薄膜,薄膜厚度较薄(~ 600 nm),且碳链聚合不良,故薄膜附着性差。当陶瓷介电质板厚度为0.38 mm,工作电压及工作频率,分别为3 kV及4 kHz,沉积之脂肪酶薄膜,薄膜厚度较厚(~ 1200 nm),碳链聚合优越,有优良的薄膜附着性,且FTIR显示薄膜有较强的波峰,及较佳的蛋白质讯号。脂肪酶薄膜,经FTIR分析,SEM影像及EDS检测有一致的结果。
为了改善脂肪酶薄膜附着不良的缺陷,本研究提出使用聚乙烯(PE)缓冲层,即第2阶段研究:脂肪酶薄膜/聚乙烯薄膜/矽晶圆。研究显示,使用聚乙烯缓冲层,经FTIR分析,脂肪酶的讯号Amide I (1640 cm-1),C-O (1080 cm-1)及OH (3400 cm-1)峰值较高,薄膜附着性佳。使用聚乙烯缓冲层的脂肪酶薄膜,经FTIR分析, SEM影像及EDS检测结果,有一致的趋势。此外、本研究所形成的脂肪酶薄膜,存在有适当的活性。
zh_TW
dc.description.abstractCovalent bonding is traditionally used for the grafting and growth of protein (or enzyme) on substrate. However, the steps are long and tedious and require formulation of chemical solutions that may lead to environmental pollution and harm to human bodies. In addition, this chemical synthesis process takes a long time to complete. Studies have shown that the deposit of protein membrane by atmospheric pressure plasma features easy to use and shorter reaction time for membrane generation. It is environmentally friendly and time saving.
This study is intended to investigate the influence of various parameters, including working voltage (kV), working frequency (kHz) and the thickness of ceramic dielectric plate (mm), on the characteristics of lipase membrane for the application of plate-type atmospheric-pressure plasma on the deposit of lipase membrane on silicon wafer substrate (Stage 1 study: lipase membrane / silicon wafer). Fourier transform infrared (FTIR) spectroscopy is employed for the qualitative analysis of the lipase membrane, scanning electron microscope (SEM) for image analysis of the membrane, EDS for the analysis of the membrane composition, and α-step for the measurement of membrane thickness. The analyses are performed with ceramic dielectric plate or 1 mm, working voltage of 3 kV and 4 kV, and working frequencies of 4 kHz and 8 kHz. The FTIR analysis indicates greater peaks and better protein signals for the lipase membrane at 3 kV and 4 kHz. However, with 1 mm of ceramic dielectric plate, the thickness of lipase membrane deposited is relatively thin (~ 600 nm) and the polymerization of carbon chains is less than satisfactory, thus poor coherence of membrane. When the thickness of ceramic dielectric plate at 0.38 mm and the working voltage and frequency at 3 kV and 4 kHz, respectively, the lipase membrane deposited is thicker (~ 1200 nm) with better polymerization of carbon chains and therefore membrane coherence. Also, FTIR indicates stronger peaks and better protein signals. For the lipase membrane produced, the analyses with FTIR, SEM and EDS produce consistent results.
As an improvement for the poor coherence of lipase membrane, a polyethylene (PE) buffer layer is proposed, which is the Stage 2 study: lipase/PE membrane/silicon wafer. The FTIR analysis suggests that the addition of the PE buffer layer results in greater peaks for the lipase signals of Amide I (1640 cm-1), C-O (1080 cm-1) and OH (3400 cm-1), and better membrane coherence. For the lipase membrane with PE buffer layer incorporated, the analyses with FTIR, SEM and EDS produce consistent results. In addition, the lipase membrane produced in the study features appropriate activity.
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dc.language.isozh_TWen_US
dc.subject脂肪酶固定zh_TW
dc.subject介电质放电大气电浆薄膜沉积zh_TW
dc.subject水雾式辅助大气电浆薄膜沉积zh_TW
dc.subjectlipase immobilizationen_US
dc.subjectdielectric barrier discharge atmospheric-pressure plasma depositionen_US
dc.subjectaerosol assisted atmospheric-pressure plasma depositionen_US
dc.title大气电浆沉积参数影响蛋白质薄膜特性之研究zh_TW
dc.titleEffect of Aerosol-Assisted DBD Atmospheric Plasma Deposition Parameters on the Coherence and Immobility of Protein-Polyethylene Filmsen_US
dc.typeThesisen_US
dc.contributor.department机械工程系所zh_TW
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