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BU researchers develop novel, woman controlled contraceptive product 新闻
来源平台:EurekAlert. 发布日期:2021
作者:  admin
收藏  |  浏览/下载:2/0  |  提交时间:2021/07/26
Project investigates remote control of enzymes using light 新闻
来源平台:EurekAlert. 发布日期:2021
作者:  admin
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Researchers use silkworm silk to model muscle tissue 新闻
来源平台:EurekAlert. 发布日期:2021
作者:  admin
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Diagenetic formation of uranium-silica polymers in lake sediments over 3,300 years 期刊论文
Proceedings of the National Academy of Science, 2021
作者:  Pierre Lefebvre;  Alkiviadis Gourgiotis;  Arnaud Mangeret;  Pierre Sabatier;  Pierre Le Pape;  Olivier Diez;  Pascale Louvat;  Nicolas Menguy;  Pauline Merrot;  Camille Baya;  Mathilde Zebracki;  Pascale Blanchart;  Emmanuel Malet;  Didier Jézéquel;  Jean-Louis Reyss;  John R. Bargar;  Jérôme Gaillardet;  Charlotte Cazala;  Guillaume Morin
收藏  |  浏览/下载:4/0  |  提交时间:2021/01/28
How fast could SARS-CoV-2 be detected? 新闻
来源平台:EurekAlert. 发布日期:2021
作者:  admin
收藏  |  浏览/下载:12/0  |  提交时间:2021/01/28
Potential extreme condition history detector - recoverable PL achieved in pyrochlore 新闻
来源平台:EurekAlert. 发布日期:2020
作者:  admin
收藏  |  浏览/下载:5/0  |  提交时间:2020/12/22
Controlling the speed of enzyme motors brings biomedical applications of nanorobots closer 新闻
来源平台:EurekAlert. 发布日期:2020
作者:  admin
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Novel tool developed to diagnose and monitor autoimmune disorders 新闻
来源平台:EurekAlert. 发布日期:2020
作者:  admin
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Engineers make a promising material stable enough for use in solar cells 新闻
来源平台:EurekAlert! - Earth Science. 发布日期:2020
作者:  admin
收藏  |  浏览/下载:8/0  |  提交时间:2020/05/09
Two-dimensional halide perovskite lateral epitaxial heterostructures 期刊论文
NATURE, 2020, 580 (7805) : 614-+
作者:  Cabrita, Rita;  Lauss, Martin;  Sanna, Adriana;  Donia, Marco;  Larsen, Mathilde;  Mitra, Shamik;  Johansson, Iva;  Phung, Bengt;  Harbst, Katja;  Vallon-Christersson, Johan;  van Schoiack, Alison;  Lovgren, Kristina;  Warren, Sarah;  Jirstrom, Karin;  Olsson, Hakan;  Pietras, Kristian;  Ingvar, Christian;  Isaksson, Karolin
收藏  |  浏览/下载:26/0  |  提交时间:2020/07/03

Epitaxial heterostructures based on oxide perovskites and III-V, II-VI and transition metal dichalcogenide semiconductors form the foundation of modern electronics and optoelectronics(1-7). Halide perovskites-an emerging family of tunable semiconductors with desirable properties-are attractive for applications such as solution-processed solar cells, light-emitting diodes, detectors and lasers(8-15). Their inherently soft crystal lattice allows greater tolerance to lattice mismatch, making them promising for heterostructure formation and semiconductor integration(16,17). Atomically sharp epitaxial interfaces are necessary to improve performance and for device miniaturization. However, epitaxial growth of atomically sharp heterostructures of halide perovskites has not yet been achieved, owing to their high intrinsic ion mobility, which leads to interdiffusion and large junction widths(18-21), and owing to their poor chemical stability, which leads to decomposition of prior layers during the fabrication of subsequent layers. Therefore, understanding the origins of this instability and identifying effective approaches to suppress ion diffusion are of great importance(22-26). Here we report an effective strategy to substantially inhibit in-plane ion diffusion in two-dimensional halide perovskites by incorporating rigid pi-conjugated organic ligands. We demonstrate highly stable and tunable lateral epitaxial heterostructures, multiheterostructures and superlattices. Near-atomically sharp interfaces and epitaxial growth are revealed by low-dose aberration-corrected high-resolution transmission electron microscopy. Molecular dynamics simulations confirm the reduced heterostructure disorder and larger vacancy formation energies of the two-dimensional perovskites in the presence of conjugated ligands. These findings provide insights into the immobilization and stabilization of halide perovskite semiconductors and demonstrate a materials platform for complex and molecularly thin superlattices, devices and integrated circuits.


An epitaxial growth strategy that improves the stability of two-dimensional halide perovskites by inhibiting ion diffusion in their heterostructures using rigid pi-conjugated ligands is demonstrated, and shows near-atomically sharp interfaces.