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Long‐lived room temperature phosphorescence (RTP) materials are widely utilized in the field of biological and chemical sensing, due to their unique characteristics of long‐lived luminescence and no background autofluorescence. However, the realization of full‐color RTP in aqueous solution still remains a great challenge. Herein, a feasible strategy for achieving high stability and full‐color RTP...
Solution‐processed colloidal quantum dots (CQDs) are promising candidates for the third‐generation photovoltaics due to their low cost and spectral tunability. The development of CQD solar cells mainly relies on high‐quality CQD ink, smooth and dense film, and charge‐extraction‐favored device architectures. In particular, advances in the processing of CQDs are essential for high‐quality QD solids...
Infrared Solar Cells
PbS colloidal quantum dot infrared solar cells can supplement silicon or perovskite solar cells. The energy level evolution of large size PbS quantum dots causes the authors to reconsider the matching charge extraction contacts. In article number 2105495, Haisheng Song and co‐workers develop a sputtered ZnO‐based champion device which obtains a certified power conversion efficiency...
Infrared solar cells (IRSCs) can supplement silicon or perovskite SCs to broaden the utilization of the solar spectrum. As an ideal infrared photovoltaic material, PbS colloidal quantum dots (CQDs) with tunable bandgaps can make good use of solar energy, especially the infrared region. However, as the QD size increases, the energy level shrinking and surface facet evolution makes us reconsider the...
Platinum (Pt) drugs are widely used in anti‐cancer treatment although many reports advocated that tumor cells could inactivate Pt drugs via glutathione‐Pt (GSH‐Pt) adducts formation. To date, GSH chelated Pt molecules have not been assessed in cancer treatment because GSH‐Pt adducts are not capable of killing cancer cells, which is widely accepted and well followed. In this report, endogenous biothiol...
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