Inverse Piezoelectricity and Carrier-Mediated Phase Instability as Intrinsic Limits in Two-Dimensional Transition Metal Dichalcogenide-Based Devices [0.03%]
二维过渡金属二硫属化合物器件中的逆压电性和载流子介导的相不稳定性intrinsitic限制研究
Utpreksh Patbhaje,Rupali Verma,Jeevesh Kumar et al.
Utpreksh Patbhaje et al.
2D transition-metal dichalcogenides (TMDs) are layered semiconducting materials with significant electromechanical coupling, whereby electric fields induce mechanical deformation and mechanical strain alters electronic properties. This elec...
Shear Stress Modeling and Machine Learning for Nanomedicine Development: A Mechanistic Pathway to Pharmacokinetic Prediction [0.03%]
剪切应力建模和机器学习在纳米药物开发中的应用:预测药代动力学的机制路径
Harshvardhan Modh,Dylan Leong,Kiran Dindhoria et al.
Harshvardhan Modh et al.
Clinical translation of nanomedicines remains constrained by a persistent gap between static preclinical assays and the dynamic shear environment of the human vasculature. This review argues that fluid shear stress is an underappreciated co...
Amr Abdelsamie,Noela Rezi,Arthur Chaudron et al.
Amr Abdelsamie et al.
Magnetoelectric multiferroics are foreseen as paramount materials to control magnetism with an electric-field, targeting energy-efficient spintronics. The archetypal room-temperature antiferromagnetic ferroelectric, BiFeO3, harbors an incom...
Guanyu Zhang,Xianghan Meng,Zini Cao et al.
Guanyu Zhang et al.
The orbital angular momentum (OAM) of light provides an unbounded set of orthogonal modes for ultrahigh-capacity optical information processing. However, current OAM detection schemes typically rely on light interference or diffraction, whi...
Bridging the Art and Science: A Symposium Honoring Prof. Luis M. Liz-Marzán for the Dong Qin ACS Award in Nanochemistry [0.03%]
Nano化学董勤AMS奖得主Luis M. Liz-Marzán教授荣誉会议:艺术与科学的融合
Yugang Sun,Jorge Pérez-Juste,Yadong Yin
Yugang Sun
This Nano Focus article summarizes the symposium honoring the inaugural Dong Qin ACS Award in Nanochemistry at the ACS Spring 2026 meeting. The event celebrated the first recipient, Prof. Luis M. Liz-Marzán, and honored the legacy of Prof....
In-Plane Lattice Deformation Reshapes Interfacial Thermal Transport and Stability Limits in van der Waals Heterostructures [0.03%]
平面晶格变形重塑范德华异质结界面热输运及稳定性限制
Yufeng Zhang,Juan Xue,Changwen Zhang et al.
Yufeng Zhang et al.
Efficient heat dissipation across van der Waals (vdW) interfaces is a long-standing challenge in two-dimensional (2D) heterostructures, where cross-plane thermal transport is commonly regarded as an intrinsic and quasi-static interface prop...
Seed Layer Engineering for Effective Charge Transfer Doping of MoS2 Transistors [0.03%]
用于调节二硫化钼载流子类型的种子层工程研究
Sahej Sharma,Shao-Heng Yang,Himani Jawa et al.
Sahej Sharma et al.
Integrating two-dimensional semiconductors, such as MoS2, with dielectric materials remains a central challenge for their use in future logic technologies. While seed layers are typically introduced to promote dielectric nucleation and adhe...
Intrinsic Force-Temperature Self-Decoupling Enables Human-like Tactile Sensing in a Soft Ionic Skin [0.03%]
固有力热解耦的软离子皮肤实现类人触觉感知
Yu Feng,Jiankun Li,Cong Wu et al.
Yu Feng et al.
Soft dual-modal tactile sensors capable of simultaneously sensing force and temperature are essential for enhancing human-like perception and interaction in robots, particularly in the functional sense of concurrent mechanical and thermal p...
Engineering Ultrahigh-Resolution Quantum Dot Light-Emitting Diodes through Stretch-Assisted Transfer Printing [0.03%]
通过拉伸辅助转印工程超高分辨率量子点发光二极管
Sen Tian,Jian Li,Wenbo Zhang et al.
Sen Tian et al.
High-resolution quantum-dot light-emitting diodes (QLEDs) are pivotal for the development of next-generation displays. While transfer printing is effective for fabricating high-resolution QLEDs with small pixels, accurately transferring nan...
A Dual-Readout Near-Infrared Fluorescent Fiber Probe for High Spatiotemporal Resolution Neurotransmitter Mapping [0.03%]
一种用于高时空分辨神经递质成像的双读出型近红外荧光光纤探针
Seyoung Shin,Yeji Kim,Jeongeun Yoo et al.
Seyoung Shin et al.
Neuromodulators such as dopamine (DA) operate through volume transmission in the brain, creating spatially distributed fields that shape circuit excitability. However, conventional sensing modalities, including voltammetry and fiber photome...