材料科学
压电
纳米复合材料
拉伤
铅(地质)
光电子学
纳米技术
钙钛矿(结构)
复合材料
化学工程
地质学
内科学
医学
地貌学
工程类
作者
Zinnia Mallick,Dalip Saini,Ranjini Sarkar,Tarun Kumar Kundu,Dipankar Mandal
出处
期刊:Nano Energy
[Elsevier]
日期:2022-09-01
卷期号:100: 107451-107451
被引量:13
标识
DOI:10.1016/j.nanoen.2022.107451
摘要
Metal halide perovskites (MHPs) are highly emerging materials for their applications in the field of photovoltaics and optoelectronics. However, beyond these applications, the MHPs have been proven to be excellent candidates for the fabrication of self-powered nanogenerators on their own or in conjunction with piezoelectric polymers such as poly(vinylidene-fluoride) (PVDF). More so, lead-free MHPs are the need of hour, which opens up the possibility of a sustainable future. Additionally, in piezoelectric composite films containing MHP, it is possible to utilize the coupling of photoexcitation, semiconducting and piezoelectric properties, which leads to the piezo-phototronic effect. Here, we report the fabrication of Cs 2 SnI 6 -PVDF (CSIP) composite, where the synthesis of Cs 2 SnI 6 nanoparticles was realized in an in-situ approach. Notably, the Cs 2 SnI 6 nanoparticles nucleates 100% electroactive β- and γ-phases in PVDF which gives rise to the intrinsic piezoelectric nature of the lead free composite film. Furthermore, to decipher the interfacial interaction between Cs 2 SnI 6 and PVDF first principle DFT study was performed which unravels the non-bonding interaction between the Cs 2 SnI 6 and PVDF. The piezo-phototronic effect was successfully realized in the CSIP film indicating its promising use in the piezotronics sensor. Moreover, the CSIP films were utilized as a piezoelectric nanogenerator, which shows superior piezoelectric output voltage of 9 V and current of 5 μA. It can also be utilized in human physiological signal monitoring, as well as a pressure sensor. Hence, the combined properties of semiconducting, photoexcitation and piezoelectricity in the CSIP films can be utilized in both mechanical energy harvesting and piezotronics sensing applications. • Outstanding environmental stability of lead-free double perovskite Cs 2 SnI 6 is observed when incorporated into PVDF matrix. • Cs 2 SnI 6 is able to induce the piezoelectric β- and γ-phase in PVDF. DFT study reveals into non-bonding interaction between Cs 2 SnI 6 and PVDF. • The Cs 2 SnI 6 -PVDF composite can be utilized as nanogenerator, pressure sensor and strain modulated photodetector. • Piezo-phototronic effect enabled photo-detection in Cs 2 SnI 6 -PVDF promises to design strain responsive optical sensors.
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