Greatly enhanced power conversion efficiency of hole-transport-layer-free perovskite solar cell via

来源 :第八届新型太阳能材料科学与技术学术研讨会 | 被引量 : 0次 | 上传用户:andyzt509
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  The interfacial contact between a perovskite and a carbon layer significantly affects the photovoltaic performance of a paintable and carbon-based hole transport material (HTM)-free perovskite solar cell (PSC).However,the detailed mechanism of the performance degradation,with regard to the carrier dynamics behavior at the perovskite/carbon interface,has not been elucidated yet.In this study,the improved interface of the perovskite/carbon was designed via a newly carbon electrode with nanosized carbon black and carbon fibers.Meanwhile,the Mott-Schottky analysis is conducted to study the carrier dynamics in the coherent and sparsely contacting interfaces,revealing that the unrestricted excitons in the nanoscale non-contact region of the coherent interface can be separated and then drove to be transported by the lateral built-in electric field.Furthermore,the HTM-free PSC via improved material design and fabrication by using a bilayer carbon electrode (coherent layer and conductive layer) results in an enhanced champion efficiency of 14.1%.
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Searching less toxic materials with both ideal bandgaps (1.0-1.5 eV for single-junction solar cells) and excellent stability remains a big challenge in perovskite optoelectronic materials field.Here,w
均一致密的钙钛矿薄膜是实现高光电转换效率太阳能电池的关键.本文证明一种利用结晶工程技术制备高结晶度、大尺寸晶粒的钙钛矿薄膜的通用方法-热压升华法(HPS).热压升华处理下,在钙钛矿薄膜和MAI薄膜之间(小于40 μm的距离)形成了密封、温度均匀和充满MAI蒸气的空间,最终确保钙钛矿薄膜在饱和的MAI蒸气中退火,同时I离子和Cl离子也发生了交换.在这个过程中,由于气相和钙钛矿薄膜之间的快速交换,使纵