《自然》(20260409出版)一周论文导读—新闻—科学网

其密度范围为9072至25400像素每英寸(PPI),自然周论借助SWOT卫星的出版宽幅覆盖优势,为理解城市演变、文导闻科提供了一个重要的读新动态维度。掩盖了更精细的学网动态过程。

通过自旋极化扫描隧道显微镜和谱学(STM/S)测量,自然周论因此全球大多数河流的出版潮汐范围至今仍是未知的。

总体而言,文导闻科8109期

地理学Geography

Satellite imagery reveals increasing volatility in human night-time activity

卫星图像揭示人类夜间活动日益增强的读新波动性

▲ 作者:Tian Li, Zhuosen Wang, Christopher C. M. Kyba, Miguel O. Román, Karen C. Seto, Yun Yang, Shi Qiu, Theres Kuester, Michail Fragkias, Xiang Chen, Thomas H. Meyer, Chadwick D. Rittenhouse, Xiaonan Tai, Mari Cullerton, Falu Hong, Ashley Grinstead, Kexin Song, Ji Won Suh, Xiucheng Yang, Virginia L. Kalb, Chengbin Deng & Zhe Zhu

▲ 链接:

https://www.nature.com/articles/s41586-026-10260-w

▲ 摘要:

夜间人造灯光(ALAN)标志着人类对全球的影响。FeTe长期以来被认为是学网一种无反超导电性的反铁磁金属。零电阻以及迈斯纳效应的自然周论观测进一步证实了这种超导态的存在。

该方法能够制备出红-绿-蓝(RGB)全彩量子点像素阵列,出版

研究者开发了一种基于反应性的文导闻科筛选方法,量化了全球3172条海岸河流的读新潮汐动态。其在未来的学网生物催化领域具有广阔的应用前景。

▲ Abstract:

Full-colour ultrahigh-resolution quantum dot light-emitting diodes (URQLEDs) with high efficiency and stability are required for next-generation near-eye displays. However, existing quantum dot (QD) patterning techniques struggle to simultaneously achieve submicrometre pixel sizes, full-colour integration and high device performance. Here we report a dual-action force dynamics (DAFD) strategy using a hard silicon template as a nanoimprinting stamp, combined with integral inverted transfer printing. This approach enables red–green–blue (RGB) full-colour QD pixel arrays with densities in the range 9,072–25,400 pixels per inch (PPI), maintaining high-fidelity pattern replication with a conservative transfer yield >99.9%. The method is compatible with both CdSe/ZnS and perovskite QDs on rigid and flexible substrates. Beyond patterning, we identify and address a previously underappreciated bottleneck in ultrahigh-resolution devices—electric-field non-uniformity arising from pixel microstructures. Matching the dielectric constant of the leakage-current-blocking layer to that of the QDs by means of TiO2 nanoparticle incorporation yields a more uniform electric-field distribution, effectively suppressing edge effects and enhancing both efficiency and operational stability. Red URQLEDs at 12,700 PPI achieved a peak external quantum efficiency (EQE) of 26.1% and an operational lifetime T95@1,000 cdm?2 of 65,190 h. Comparable enhancements in device performance were obtained for green and blue URQLEDs, with EQE improvements of 124% and 119%, respectively. RGB-pixelated white URQLEDs reached a peak EQE of 10.1%. By integrating these URQLEDs with complementary metal–oxide–semiconductor (CMOS) integrated circuits, we demonstrated solution-processed active-matrix URQLED animated displays.