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首页> 外文期刊>Journal of nanoscience and nanotechnology >Ultra-Thin Atomic Layer Deposited TiN Films: Non-Linear I-V Behaviour and the Importance of Surface Passivation
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Ultra-Thin Atomic Layer Deposited TiN Films: Non-Linear I-V Behaviour and the Importance of Surface Passivation

机译:超薄原子层沉积TiN膜:非线性IV行为和表面钝化的重要性

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We report the electrical resistivity of atomic layer deposited TiN thin films in the thickness range 2.5-20 nm. The measurements were carried out using the circular transfer length method structures. For the films with thickness in the range of 10-20 nm, the measurements exhibited linear current-voltage (I-V) curves. The sheet resistance R_(Sh) was determined, and the resistivity was calculated. A value of 120 μΩ-cm was obtained for a 20 nm TiN layer. With decreasing film thickness, the resistivity slightly increased and reached 135 μΩ-cm for a 10 nm film. However, the measurements on 2.5-5.0 nm thick films revealed non-linear I-V characteristics, implying the dependence of the measured resistance, and therefore the resistivity, of the layers on applied voltage. The influence of the native oxidation due to the exposure of the films to air was taken into account. To fully eliminate this oxidation, a highly-resistive amorphous silicon layer was deposited directly after the ALD of TiN. The electrical measurements on the passivated 2.5- and 3.5 nm TiN layers then exhibited linear I-V characteristics. A resistivity of 400 and 310 μΩ-cm was obtained for a 2.5- and 3.5 nm TiN film, respectively.
机译:我们报告了在厚度范围为2.5-20 nm的原子层沉积的TiN薄膜的电阻率。使用循环转移长度方法结构进行测量。对于厚度在10-20 nm范围内的薄膜,测量结果显示出线性电流-电压(I-V)曲线。确定薄层电阻R_(Sh),并计算电阻率。对于20 nm TiN层,获得的值为120μΩ-cm。随着膜厚度的减小,电阻率略有增加,对于10 nm膜,电阻率达到135μΩ-cm。但是,在2.5-5.0 nm厚的膜上进行的测量显示出非线性的I-V特性,这意味着所测电阻以及所施加电阻层的电阻率都与之相关。考虑了由于膜暴露于空气而引起的自然氧化的影响。为了完全消除这种氧化,在TiN的ALD之后直接沉积了高电阻的非晶硅层。然后在钝化的2.5 nm和3.5 nm TiN层上进行电学测量,显示出线性的I-V特性。对于2.5和3.5 nm TiN膜,分别获得400和310μΩ-cm的电阻率。

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