纳米技术:高速集成纳米线电路
Robin S Friedman1, Michael C McAlpine, David S Ricketts
1Department of Chemistry and Chemical Biology, Harvard University, Cambridge, Massachusetts 02138, USA.
Nature
|April 29, 2005
概括
研究人员开发了低温工艺,将高性能多纳米线晶体管集成到玻璃基板上,从而实现灵活和低成本的电子电路. 这一突破为无处不在的计算设备和先进显示器铺平了道路.
科学领域:
- 材料科学 材料科学 材料科学
- 电气工程 电气工程
- 纳米技术纳米技术
背景情况:
- 在玻璃或塑料等柔性基板上的宏电子电路为无处不在,轻量级和低成本计算提供了潜力.
- 传统半导体所需的高加工温度限制了它们在这些可变形基板上的使用,导致性能不佳.
- 现有的灵活电子产品通常依赖于有机或无形半导体,其表现不佳的性能特征.
研究的目的:
- 开发低温工艺,将高性能晶体管集成到玻璃基板上.
- 为了证明在柔性玻璃上创建功能宏电子电路的可行性.
- 为了克服灵活电子中的高温加工的局限性.
主要方法:
- 使用低温制造技术集成多纳米线晶体管.
- 在玻璃基板上制造逻辑逆变器和快环振荡器.
- 在低温下对晶体管性能和电路功能的描述.
主要成果:
- 成功地将高性能多纳米线晶体管集成到玻璃基板上.
- 功能逻辑逆变器和快环振荡器的演示.
- 实现了与传统半导体技术相比的高性能,尽管在低温处理.
结论:
- 低温加工使高性能晶体管能够在玻璃上集成,克服了以前的限制.
- 这种进步有助于开发出强大,灵活和具有成本效益的电子设备.
- 潜在的应用包括无处不在的计算,低成本的射频标签和高刷新率显示器.
相关概念视频
Energy Stored in a Capacitor
When an archer pulls the string in a bow, he saves the work done in the form of elastic potential energy. When he releases the string, the potential energy is released as kinetic energy of the arrow. A capacitor works on the same principle in which the work done is saved as electric potential energy. The potential energy (UC) could be calculated by measuring the work done (W) to charge the capacitor.
RC Circuits: Charging A Capacitor
A circuit containing resistance and capacitance is called an RC circuit. A capacitor is an electrical component that stores electric charge by storing energy in an electric field. Consider a simple RC circuit having a DC (direct current) voltage source ε, a resistor R, a capacitor C, and a two-way position switch. In the circuit, the capacitor can be charged or discharged depending on the position of the switch.
When the switch is moved to connect the battery, the circuit reduces to a simple...
When the switch is moved to connect the battery, the circuit reduces to a simple...
Energy Stored in Inductors
An inductor is ingeniously crafted to accumulate energy within its magnetic field. This field is a direct result of the current that meanders through its coiled structure. When this current maintains a steady state, there is no detectable voltage across the inductor, prompting it to mimic the behavior of a short circuit when faced with direct current.
In terms of gauging the energy stored within an inductor, it is equivalent to the integral of the power delivered at every individual moment, all...
In terms of gauging the energy stored within an inductor, it is equivalent to the integral of the power delivered at every individual moment, all...
Design Example: Capacitance Multiplier Circuit
In integrated circuit technology, a capacitance multiplier is often utilized to produce a larger capacitance value when a small physical capacitance falls short. This is achieved by a circuit that multiplies capacitance values by a factor of up to 1000, such that a 10-pF capacitor can replicate the performance of a 100-nF capacitor.
The circuit illustrated in Figure 1 below incorporates two op-amps, with the first operating as a voltage follower and the second acting as an inverting amplifier.
The circuit illustrated in Figure 1 below incorporates two op-amps, with the first operating as a voltage follower and the second acting as an inverting amplifier.
MOSFET: Enhancement Mode
Enhancement-mode MOSFETs are pivotal components in electronics, distinguished by their capacity to act as highly efficient switches. They are part of the larger family of metal-oxide Semiconductor Field-Effect Transistors (MOSFETs). They are available in two types: p-channel and n-channel, each tailored to specific polarity operations.
In their basic form, enhancement-mode MOSFETs are typically non-conductive when the gate-source voltage (Vgs) is zero. This default 'off' state means no current...
In their basic form, enhancement-mode MOSFETs are typically non-conductive when the gate-source voltage (Vgs) is zero. This default 'off' state means no current...
Fast Decoupled and DC Powerflow
The fast decoupled power flow method addresses contingencies in power system operations, such as generator outages or transmission line failures. This method provides quick power flow solutions, essential for real-time system adjustments. Fast decoupled power flow algorithms simplify the Jacobian matrix by neglecting certain elements, leading to two sets of decoupled equations:


