Maiti Abhishek, Pal Amlan J
School of Physical Sciences, Indian Association for the Cultivation of Science, 700032, Kolkata, India.
UGC-DAE Consortium for Scientific Research, University Campus, Khandwa Road, 452001, Indore, India.
Angew Chem Int Ed Engl. 2022 Dec 23;61(52):e202214161. doi: 10.1002/anie.202214161. Epub 2022 Nov 24.
A pair of zero-dimensional lead-free chiral perovskites is introduced towards the detection of circularly polarized light (CPL). Although spin-polarized carriers are generated in the perovskites under the CPL, the absorption anisotropy remained low leading to mostly similar density of photogenerated carriers under the two CPLs. Interestingly, due to the intrinsic chirality in the perovskites, they exhibited chirality-induced spin-selectivity (CISS) allowing the transport of only one type of spin-half states. A high anisotropy in photocurrent along the out-of-plane direction has therefore appeared resulting in a spin-dependent photovoltaic effect in vertical heterojunction devices and making them suitable for CPL detection. While a self-powered CPL detector showed a limited (but one of the highest to date) anisotropy factor of 0.3 due to possible spin-flips during the transport process, the factor rose to 0.6 under bias prompting extension of the effective spin-diffusion length.
引入了一对零维无铅手性钙钛矿用于圆偏振光(CPL)检测。尽管在CPL照射下钙钛矿中会产生自旋极化载流子,但吸收各向异性仍然较低,导致在两种CPL下光生载流子密度大多相似。有趣的是,由于钙钛矿中的固有手性,它们表现出手性诱导自旋选择性(CISS),仅允许一种自旋半态的载流子传输。因此,沿面外方向的光电流出现了高各向异性,在垂直异质结器件中产生了自旋相关的光伏效应,使其适用于CPL检测。虽然一个自供电CPL探测器由于传输过程中可能的自旋翻转而显示出有限的(但也是迄今为止最高之一)各向异性因子0.3,但在偏压下该因子升至0.6,促使有效自旋扩散长度延长。