A Zwitterionic Azo Posolyte for Long-Lifetime Aqueous Redox Flow Batteries [0.03%]
用于长寿命水系氧化还原液流电池的两性离子偶氮(pos)酸盐
Zhiyu Wang,Xun Wang,Manohar Salla et al.
Zhiyu Wang et al.
A growing share of variable renewable generation requires low-cost, long-duration grid-level energy storage. Aqueous organic redox flow batteries (AORFBs) offer tunable molecular chemistry and scalable flow architecture; acidic systems enab...
Circuit-Free Cardiovascular Monitoring via Smartphone-Readable Skin-Interfaced Nanophotonic Films [0.03%]
基于智能手机的可穿戴光学传感薄膜实现无导线心血管监测技术
Torjus L Steffensen,Vegar Stubberud,Emilie S Hennisen et al.
Torjus L Steffensen et al.
Nanoscale mechano-optical surfaces enable electronics-free strain sensing, attractive for skin-interfaced devices, yet reported implementations require laser/spectrometer interrogation, negating this advantage. Here, we report electrically ...
Giant-Exchange-Driven Vectorial Control of a Minimal Topological Magnet in Eu3In2As4 [0.03%]
Eu3In2As4中极小拓扑磁体的巨交换驱动矢量调控
Haonan Chen,Xunkai Duan,Guangyi Wang et al.
Haonan Chen et al.
The interplay between magnetism and band topology provides a route to controlling quantum states of matter, yet its realization in materials is often constrained by weak exchange coupling and complex electronic structures. Here, a giant exc...
Universal Upcycling of Spent Cathodes Into Lithium Donors for High-Performance and Resilient Batteries [0.03%]
用于高性能和坚韧电池的废阴极材料通用再利用技术使其转变为锂供体
Ganxiong Liu,Zhiqi Yang,Fangzhou Yang et al.
Ganxiong Liu et al.
Conventional direct regeneration struggles to restore the electrochemical performance of spent cathodes, particularly long-term cycling stability, and this challenge is amplified for unsorted mixed waste streams. Instead of restoring revers...
Spin-Orientation Modulation of Topology and Transport in a Breathing-Kagome Weyl Magnet [0.03%]
呼吸型凯格尔(Weyl)磁体中自旋方向对拓扑和输运性质的调制
Yang Liu,Junyan Liu,Jiamin Mou et al.
Yang Liu et al.
The manipulation over diverse topological matters has become a critical demand for advancing quantum devices and topological spintronics. However, such experimental demonstrations remain scarce. Here, based on a novel breathing kagome magne...
The Emergence of BLZ-20: A Novel Wide-Bandgap Donor Polymer Achieving a Record 20.55% Efficiency in Organic Solar Cells [0.03%]
新型宽带隙给体聚合物BLZ-20实现有机太阳电池20.55%记录级效率及其作用机制研究
Xinming Zheng,Nan Wei,Xiaodong Wang et al.
Xinming Zheng et al.
To address the critical challenge of the scarcity of low-cost wide-bandgap polymer donor materials, we have developed a novel ester-substituted benzotrithiophene acceptor unit. The incorporation of an ester group into the benzotrithiophene ...
Hydrogen-Bond Mediated Synthesis of Conductive Quantum Dots for All-Ink Optoelectronic Devices [0.03%]
氢键介导的导电量子点合成用于全墨水光电子器件
Chao Wang,Yinglin Wang,Hao Li et al.
Chao Wang et al.
Short-chain molecular ligands (SMLs) are favored for producing colloidal quantum dot (CQD) inks for solution-processed optoelectronics, since they enable more efficient charge transport than conventional long-chain ligands. However, their w...
Metal Oxide Nano-Interface Boosting the Deep Ultraviolet Adjustable Noise-Filtering In-Sensor Computing [0.03%]
用于深紫外线可调噪声过滤的传感器内计算的金属氧化物纳米界面增强技术
Zhongshi Ju,Peng Li,Jingsong Yuan et al.
Zhongshi Ju et al.
Long-afterglow light-emitting devices (LALEDs), which combine the capabilities of sensing, memory, processing, and display integration, allow for the simultaneous implementation of optical and electrical in-sensor computing. However, the in...
Chengwei Wu,Dianming Chu,Chenyu Gao et al.
Chengwei Wu et al.
Carbon nanotube fibers (CNTFs) exhibit exceptional mechanical, electrical, and thermal properties, granting them broad application potential in aerospace, flexible electronics, and advanced composites. However, the performance of CNTFs prod...
Suppressing Nonradiative Losses via Computation-Guided Molecular Design of Self-Assembled Interfacial Layers for High-Performance Organic Solar Cells [0.03%]
通过计算指导的分子设计抑制非辐射损耗以获得高性能有机太阳能电池中的自组装界面层
Tianyu Zeng,Lei Liu,Yao Chen et al.
Tianyu Zeng et al.
The rational design of efficient self-assembled interlayers (SAIs) is pivotal for overcoming the efficiency bottleneck in organic solar cells (OSCs), in which substantial nonradiative energy losses limit further performance improvements. In...