Printable organometallic perovskite enables large-area, low-dose X-ray imaging

被引:996
作者
Kim, Yong Churl [1 ]
Kim, Kwang Hee [1 ]
Son, Dae-Yong [2 ,3 ]
Jeong, Dong-Nyuk [2 ,3 ]
Seo, Ja-Young [2 ,3 ]
Choi, Yeong Suk [1 ]
Han, In Taek [1 ]
Lee, Sang Yoon [1 ]
Park, Nam-Gyu [2 ,3 ]
机构
[1] SAIT, Samsung Elect Mat Res Complex, Suwon 443803, South Korea
[2] Sungkyunkwan Univ, Sch Chem Engn, Suwon 440746, South Korea
[3] Sungkyunkwan Univ, Dept Energy Sci, Suwon 440746, South Korea
基金
新加坡国家研究基金会;
关键词
SOLAR-CELLS; SINGLE-CRYSTALS; AMORPHOUS SELENIUM; EFFICIENCY; DETECTORS; RADIATION; PHOTONS;
D O I
10.1038/nature24032
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Medical X-ray imaging procedures require digital flat detectors operating at low doses to reduce radiation health risks(1,2). Solutionprocessed organic-inorganic hybrid perovskites have characteristics that make them good candidates for the photoconductive layer of such sensitive detectors(3-7). However, such detectors have not yet been built on thin-film transistor arrays because it has been difficult to prepare thick perovskite films (more than a few hundred micrometres) over large areas (a detector is typically 50 centimetres by 50 centimetres). We report here an all-solutionbased (in contrast to conventional vacuum processing) synthetic route to producing printable polycrystalline perovskites with sharply faceted large grains having morphologies and optoelectronic properties comparable to those of single crystals. High sensitivities of up to 11 microcoulombs per air KERMA of milligray per square centimetre (mu C mGyair(-1) cm(-2)) are achieved under irradiation with a 100-kilovolt bremsstrahlung source, which are at least one order of magnitude higher than the sensitivities achieved with currently used amorphous selenium or thallium-doped cesium iodide detectors. We demonstrate X-ray imaging in a conventional thin-film transistor substrate by embedding an 830-micrometrethick perovskite film and an additional two interlayers of polymer/perovskite composites to provide conformal interfaces between perovskite films and electrodes that control dark currents and temporal charge carrier transportation. Such an all-solution-based perovskite detector could enable low-dose X-ray imaging, and could also be used in photoconductive devices for radiation imaging, sensing and energy harvesting.
引用
收藏
页码:87 / +
页数:10
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