Rui Zhuo,Kyoko Namura,Motofumi Suzuki
Rui Zhuo
In this study, we investigated the influence of nanoscale structures on the channel walls on photothermally induced Marangoni convection within a droplet. SiO2nanocolumns with varying densities and heights were fabricated on an FeSi2thin fi...
Synergistic defect passivation and energy band reconstruction via LiH2PO4additive for efficient inverted perovskite solar cells [0.03%]
用于高效倒置钙钛矿太阳能电池的LiH2PO4添加剂的协同缺陷钝化和能带重构作用
Xiang Hong,Xinqian Xie,Chuiyu Li et al.
Xiang Hong et al.
Inverted perovskite solar cells (PSCs) are fundamentally constrained by non-radiative recombination and energy-level mismatches. Herein, we introduce lithium dihydrogen phosphate (LiH2PO4) as a multifunctional precursor additive to regulate...
Metal-assisted chemical etching for controllable fabrication of silicon nanochannels [0.03%]
金属催化化学腐蚀法可控制造硅纳米通道
Zixiu Chen,Nan An,Longfei Miao et al.
Zixiu Chen et al.
Silicon nanochannels possess adjustable structural characteristics and excellent mechanical properties, and have great application potential in nanoelectromechanical systems, seawater desalination, and nanoreactors. However, achieving contr...
Multiplex FET biosensor with vapor-deposited molecularly imprinted nanotubes for cancer biomarkers [0.03%]
用于癌症生物标志物的多重FET生物传感器(具有气相沉积分子印迹纳米管)
Faruk Can,Ufuk Ulas Tokat,Elaheh Yousefimiab et al.
Faruk Can et al.
Molecularly imprinted polymer (MIP) interfaces offer antibody-level selectivity without bioreceptor instability, yet their integration into transistor-based sensors remains limited. In this study, we present a novel multiplex field-effect t...
Investigating the contributions of electrostatic and capillary effects in anti-dust nanostructures [0.03%]
探究反尘埃纳米结构中静电作用和毛细作用的贡献
Daniela Cordon,Andrew Tunell,Logan Kirsch et al.
Daniela Cordon et al.
Dust contamination is a key challenge for deployment of optics in harsh environments, maintenance of photovoltaics, and the pursuit of sustainable interplanetary exploration. In this work, the dust mitigation properties of nanostructured su...
The high stable RuMnSnOx catalysts for enhanced oxygen evolution reaction and anti-reversal performance [0.03%]
一种高效析氧及抗反向的高性能稳定钌锰锡氧化物催化剂
Guang Zhu,Dan Lu,Xuefeng Zhou et al.
Guang Zhu et al.
Proton exchange membrane water electrolyzers (PEMWE) has become a promising clean energy technology. The development of highly active and stable Ru-based catalysts with high oxygen evolution reaction (OER) activity is crucial to the practic...
An optoelectronic synapse based on electrochemically deposited CuI thin film for neuromorphic visual processing [0.03%]
基于电化学沉积的CuI薄膜的光电突触在仿生视觉处理中的应用
Qiufei Yu,Zhongao Yang,Xiaojian Chen et al.
Qiufei Yu et al.
This work reports a low-cost optoelectronic synaptic device based on an electrochemically deposited CuI thin film. The electrochemical deposition technique enables large-area and uniform thin-film fabrication under low-temperature and ambie...
Study on the structure and photocatalytic performance of MWCNT/TiO2synthesized by supercritical hydrothermal method [0.03%]
超临界水热法合成MWCNT/TiO2结构及光催化性能研究
Wenjin Zhang,Shuzhong Wang,Junan Zhao et al.
Wenjin Zhang et al.
In this study, multi-walled carbon nanotubes and TiO2composite materials (MWCNT/TiO2) were respectively synthesized using supercritical hydrothermal synthesis combined with a secondary hydrothermal doping method and anin-situdoping method v...
Synthesis of small-sized and high crystallinity TiO2for preparation of transparent photocured resin with tunable refractive index [0.03%]
用于制备可调折射率透明光固化树脂的小尺寸高结晶度TiO2的合成
Jingming Li,Weizhang Zhao,Xuefei Wang et al.
Jingming Li et al.
The refractive index (RI) of acrylic acid polymer is crucial for their optical applications and can be improved by hybridizing with titanium dioxide (TiO2). However, the size of the dispersed TiO2nanoparticles affects the transparency of th...
CORRIGENDUM: A new type of stable borophene with flat-band-induced magnetism (2023 Nanotechnology 34 505701) [0.03%]
更正:具有平坦带诱导磁性的新型稳定硼烯(2023年纳米技术34 505701)
Zhijian Li,Yang Xue,Qingzhao Yao et al.
Zhijian Li et al.
Published Erratum
Nanotechnology. 2026 Apr 14;37(15). DOI:10.1088/1361-6528/ae5973 2026