标题: 整合延伸闸极与无接面环绕式闸极奈米线场效电晶体之生医感测研究
Study of Junctionless GAA nanowire FETs with extended gate as Biosensors
作者: 江莉娟
Chiang, Li-Chuan
许钲宗
潘扶民
Sheu, Jeng-Tzong
Pan, Fu-Ming
材料科学与工程学系奈米科技硕博士班
关键字: 无接面;反转式;奈米线;环绕式;电晶体;延伸闸极;微流道;生医感测;Junctionless (JL);Inversion mode (IM);Nanowire (NW);Gate-all-around (GAA);Field-effect Transistor;extended gate;microfluidic system;Biosensing
公开日期: 2015
摘要:   本论文的研究目标为整合环绕式闸极奈米线场效电晶体与延伸式闸极感测晶片于微流道系统中进行即时侦测生物分子。首先利用电子束微影,制作出通道厚度7奈米、宽度约80奈米的无接面(Junctionless)及反转式(Inversion Mode)两种环绕式闸极矽奈米线电晶体。电性量测显示无接面及反转式电晶体皆拥有良好的电性:陡峭的次临界摆幅 (SS; 63~71 mV/decade)、极低的汲极引发位能障降低(DIBL; 0 mV/V) 和高开关电流比 (~5×106 , VD= 0.1 V)。且延伸式电晶体闸极应用于微流道系统中进行酸硷值离子感测,同时运用多种条件改变下的侦测条件,例如:改变延伸式闸极的表面材料、电晶体操作在不同工作区域的闸极电压下、降低汲极端供给的电压、改变感测区的电极面积、以及是否带有-NH2键的修饰表面来测试元件之感测灵敏度。另外,利用在晶片表面修饰APTES与NHS-biotin,来测试不同浓度Streptavidin蛋白与NHS-biotin进行专一性结合后,造成延伸式闸极的表面电位变化。再以相同修饰模式透过萤光和电容阻抗分析修饰步骤的稳定性与可靠度。由实验结果看出无接面及反转式环绕式闸极电晶体均适合做为生物分子感测元件,并作为即时侦测的生医检验平台的传感器。不过无接面环绕式闸极矽奈米线电晶体具有较简单的元件制程,在元件持续微小化的过程将具有较高的良率。
Integration of gate-all-around (GAA) silicon nanowire (NW) field-effect-transistor (FET) and extended gate as sensor for real-time detection of biomolecules in microfluidic system is the focus of this thesis. Both junctionless (JL) and inversion mode (IM) GAA nanowire FETs with 7-nm thick and 80-nm wide channel were prepared on the same chip for comparison. Both GAA NW devices exhibit outstanding electric properties such as a very steep subthreshold slope (SS; 63~71 mV/decade), a virtual absence of drain-induced barrier lowering (DIBL; 0 mV/V) and a high ON/OFF current ratio (~5×106, VD= 0.1 V). Then, capacitive extended gates were connected to JL and IM GAA nanowire FETs for both pH and biosensing in microfluidic system. For sensitivity of pH sensing, both the surface dielectric materials of extended gate and working regions of SiNW FETs under different gate voltages were investigated. By modification of APTES and NHS-biotin on the surface of extended gate, real-time streptavidin detections were evaluated. The reliability of modifications was justified by using the fluorescence technique and electrochemical impedance spectroscopy. Based on the experimental results, JL and IM GAA nanowire FETs are both applicable as biomolecule sensing transducers. However, JL GAA NW FETs need simpler fabrication process and thus provides high yield when preparing the devices.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT070251605
http://hdl.handle.net/11536/127691
显示于类别:Thesis