School of Materials Science and Engineering, Hebei University of Technology, Tianjin 300130, P. R. China.
Nanoscale. 2018 Dec 7;10(45):21451-21458. doi: 10.1039/c8nr05683h. Epub 2018 Nov 14.
One-dimensional (1D) inorganic perovskite nanowires (NWs) have attracted promising attention for application in the fields of photodetection, lasers and lighting due to their outstanding optoelectronic properties. However the direct synthesis of highly pure all-inorganic perovskite NWs with well-defined morphologies and compositions still remains challenging. Here we report the controllable synthesis of brightly emitting cesium lead halide CsPbX (X = Cl, Br) NWs and their assembly into high-performance photodetector nanodevices. High quality CsPbX NWs have been directly synthesized via a solvothermal method without using post-synthetic anion-exchange reactions. The NWs are single-crystalline, with uniform diameters of ∼10 nm and lengths of up to tens of microns, showing ultra-high aspect ratios. Both CsPbCl and CsPbBr NWs show excellent photoluminescence (PL) characteristics with narrow emission spectra and high PL quantum yields (PLQYs). The photodetectors constructed on the CsPbX NWs and interdigital electrodes (with interdigitation widths up to 100 μm) exhibit promising photoelectric properties, achieving high switching ratios (5.8 × 10 for CsPbCl NW devices and 1.1 × 10 for CsPbBr NW devices) and fast response time. The present solvothermal approach is controllable, convenient, and is easily realized for quantifiable preparation, and can further promote the application of the all-inorganic perovskite NWs in the optoelectronic field.
一维(1D)无机钙钛矿纳米线(NWs)由于其出色的光电性能,在光电探测、激光和照明等领域引起了人们的广泛关注。然而,直接合成具有明确形态和组成的高纯度全无机钙钛矿 NWs 仍然具有挑战性。在这里,我们报告了可控合成发光明亮的铯铅卤化物 CsPbX(X = Cl,Br)NWs 及其组装成高性能光电探测器纳米器件。高质量的 CsPbX NWs 是通过溶剂热法直接合成的,而无需进行后合成的阴离子交换反应。NWs 是单晶的,具有均匀的直径约为 10nm 和长达数十微米的长度,表现出超高的纵横比。CsPbCl 和 CsPbBr NWs 都表现出优异的光致发光(PL)特性,具有窄的发射光谱和高的 PL 量子产率(PLQY)。在 CsPbX NW 和叉指电极(叉指宽度可达 100μm)上构建的光电探测器表现出有前景的光电性能,实现了高开关比(CsPbCl NW 器件为 5.8×10,CsPbBr NW 器件为 1.1×10)和快速响应时间。本溶剂热方法可控、方便,易于实现定量制备,并能进一步推动全无机钙钛矿 NWs 在光电子领域的应用。