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首页> 外文期刊>Dyes and Pigments >Achieving variable infrared emissivity modulation regions of poly(aniline) films:the effect of film surface morphology on the optical tunability
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Achieving variable infrared emissivity modulation regions of poly(aniline) films:the effect of film surface morphology on the optical tunability

机译:聚(苯胺)膜的可变红外发射率调制区:薄膜表面形态对光学可调性的影响

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Infrared (IR) electrochromic materials, which can dynamically regulate the IR optical properties, are particularly desirable in intelligent thermal management technology. However, for these materials, an outstanding challenge is in achieving a series of different emissivity modulation capabilities for different applications. Here, we obtain the functional poly(aniline) (PANI) films with significantly different emissivity modulation capability by tailoring the surface morphology of the PANI film. The PANI film with a non-directionally distributed nanowirelike structure (PANI2) and a rather smooth surface decorated by shallow voids (PANI6) can realize the emissivity variations from 0.321 to 0.712 and 0.190 to 0.573 in the wavelength range of 2.5-25 mu m, respectively. Combined with XPS, UV-vis-NIR characterizations, and IR light propagation analysis in two representative morphologies, the reason for the thermal radiation energies of PANI2 at two states were significantly higher than those of PANI6 was proposed. As the residual PANI in PANI2 was not involved in redox reaction and remained in the emeraldine salt (ES) state, and the multiple reflections by non-directionally distributed nanowire on the surface suppressed the reflection of incident IR light. Moreover, we investigated the heat dissipation modulation capabilities of PANI2 and PANI6. PANI2 can achieve greater heat dissipation at a high emissivity state (epsilon = 0.712), while PANI6 can effectively suppress heat dissipation at a low emissivity state (epsilon = 0.190). Moreover, we utilized the IR thermal imager and transient thermal field analysis to evaluate the heat dissipation modulation capabilities of PANI2 and PANI6.
机译:红外电致变色材料能够动态调节红外光学特性,在智能热管理技术中尤为理想。然而,对于这些材料来说,一个突出的挑战是在不同的应用中实现一系列不同的发射率调制能力。在这里,我们通过调整聚苯胺(PANI)薄膜的表面形态,获得了具有显著不同发射率调制能力的功能性聚苯胺(PANI)薄膜。具有非定向分布的纳米线状结构(PANI2)和由浅空洞(PANI6)装饰的相当光滑的表面的PANI膜可以实现发射率在2.5-25μm波长范围内分别从0.321到0.712和0.190到0.573的变化。结合XPS、UV-vis-NIR表征和两种典型形貌的红外光传输分析,提出了聚苯胺2在两种状态下的热辐射能量显著高于聚苯胺6的原因。由于PANI2中残留的PANI不参与氧化还原反应,并保持在祖母绿盐(ES)状态,且非定向分布的纳米线在表面的多次反射抑制了入射红外光的反射。此外,我们还研究了聚苯胺2和聚苯胺6的散热调制能力。聚苯胺2可以在高发射率状态(ε=0.712)下实现更大的散热,而聚苯胺6可以在低发射率状态(ε=0.190)下有效抑制散热。此外,我们利用红外热像仪和瞬态热场分析来评估聚苯胺2和聚苯胺6的散热调制能力。

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