Zhang Dan, Zhou Shuqi, Liu You, Fan Xia, Zhang Mingliang, Zhai Jin, Jiang Lei
Key Laboratory of Bio-Inspired Smart Interfacial Science and Technology of the Ministry of Education, School of Chemistry , Beihang University , Beijing 100083 , People's Republic of China.
Engineering Research Center for Semiconductor Integrated Technology, Institute of Semiconductors , Chinese Academy of Sciences , Beijing 100083 , People's Republic of China.
ACS Nano. 2018 Nov 27;12(11):11169-11177. doi: 10.1021/acsnano.8b05695. Epub 2018 Nov 1.
Photoresponsive nanochannel systems whose ionic transportation properties can be controlled by the photoelectric effect, such as for green chlorophyll pigments in plants, are attracting widespread attention. Herein, we prepared photoresponsive heterogeneous nanochannels by decorating self-assembled tetra(4-sulfonatophenyl)porphyrin (TPPS) nanofiber membranes on a membrane of hourglass-shaped alumina (AlO) nanochannels using the diffusion-limited patterning (DLP) method. The close arrangement of large-area nanofibers promoted the photoresponse sensitivity of the heterogeneous nanochannels, which showed the highest ionic transportation current. With illumination comparable to sunlight in intensity, the photoresponsive ionic current was approximately 9.7 μA, demonstrating photoswitching, which could be used to regulate the reversible transformation of ionic currents. Meanwhile, the cooperative effect of the TPPS nanofibers assembled at the entrance to the nanochannels and the TPPS molecules inside the nanochannels allowed the heterogeneous nanochannels to exhibit a good rectifying performance.
其离子传输特性可通过光电效应控制的光响应纳米通道系统,比如植物中的绿色叶绿素色素,正受到广泛关注。在此,我们使用扩散限制图案化(DLP)方法,通过在沙漏形氧化铝(AlO)纳米通道膜上修饰自组装的四(4 - 磺酸钠苯基)卟啉(TPPS)纳米纤维膜,制备了光响应异质纳米通道。大面积纳米纤维的紧密排列提高了异质纳米通道的光响应灵敏度,其显示出最高的离子传输电流。在与太阳光强度相当的光照下,光响应离子电流约为9.7 μA,展示了光开关特性,可用于调节离子电流的可逆转变。同时,在纳米通道入口处组装的TPPS纳米纤维与纳米通道内部的TPPS分子的协同效应,使异质纳米通道表现出良好的整流性能。