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Rheology printing for metal-oxide patterns and devices

机译:用于金属氧化物图案和设备的流变印刷

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摘要

Technologies of device printing have been widely explored, but existing printing techniques still cannot produce well-defined patterns required by fine electronic devices. Here, a new printing method is proposed and the printing of metal-oxide patterns with well-defined shapes was demonstrated. Excellent thin-film transistors with channel lengths around 500 nm were completely printed by this method in an air atmosphere. This printing utilizes a viscoelastic transformation of the precursor gel when imprinted; it softens at a certain temperature during thermal-imprinting so that the gel can be Theologically imprinted. The imprinted pattern shows very small shrinkage during post-annealing, thereby achieving a high shape fidelity to the mould; this results from metal-oxide condensation at imprinting. The viscoelastic transformation and metal-oxide condensation at imprinting constitute the basis for this printing method, which is closely related to the cluster structure in the precursor gel. This method has worked for patterns down to several tens of nanometers.
机译:设备印刷技术已经被广泛地探索,但是现有的印刷技术仍然不能产生精细电子设备所需的清晰的图案。在此,提出了一种新的印刷方法,并演示了形状明确的金属氧化物图案的印刷。用这种方法在空气中完全印刷了沟道长度约为500 nm的优质薄膜晶体管。这种印刷利用了前体凝胶的粘弹性转化。它在热压印过程中在一定温度下会软化,因此可以从理论上压印凝胶。压印图案在退火后显示出很小的收缩率,从而使模具具有很高的形状保真度。这是由于压印时金属氧化物的缩合所致。压印过程中的粘弹性转变和金属氧化物缩合构成该印刷方法的基础,与前体凝胶中的簇结构密切相关。这种方法适用于几十纳米的图案。

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