首尔国立大学:异质结构晶面工程提升光电化学水分解活性
9Nano-Micro Letters 发布于 2022-03-03
太阳能驱动的光电化学水分解被认为是解决能源危机的一个重大突破。尽管其前景广阔,但由于效率和稳定性相对较低,光电化学水分解的商业化进程受到限制。尽管基于金属氧化物的光电极,如TiO₂、Fe₂O₃、WO₃和BiVO₄可以很容易地合成,但其光活性仍受到很多限制,比如电荷重组和短的载流子...
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Nano-Micro Letters 发布于 2022-03-03
太阳能驱动的光电化学水分解被认为是解决能源危机的一个重大突破。尽管其前景广阔,但由于效率和稳定性相对较低,光电化学水分解的商业化进程受到限制。尽管基于金属氧化物的光电极,如TiO₂、Fe₂O₃、WO₃和BiVO₄可以很容易地合成,但其光活性仍受到很多限制,比如电荷重组和短的载流子...
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Nano-Micro Letters 发布于 2022-03-03
纤维状电子器件是近年来发展起来的一种新型柔性器件,具有独特的超柔韧性、形状适应性和可编织性,允许各种变形,包括弯曲、拉伸、扭曲等。迄今为止,不同种类的纤维状器件陆续被报道,包括纤维状发电机、传感器、探测器等。这些纤维状功能化器件需要寻求相匹配的纤维储能器件,以实现稳定、独立、完整...
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Nano-Micro Letters 发布于 2022-03-03
Unraveling Passivation Mechanism of Imidazolium-Based Ionic Liquids on Inorganic Perovskite to Achieve Near‑Record-Efficiency CsPbI₂Br Solar...
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Nano-Micro Letters 发布于 2022-03-03
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Nano-Micro Letters 发布于 2022-03-02
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Nano-Micro Letters 发布于 2022-02-22
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Nano-Micro Letters 发布于 2022-02-22
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Nano-Micro Letters 发布于 2022-02-22
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Nano-Micro Letters 发布于 2022-02-22
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Nano-Micro Letters 发布于 2022-02-22
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Nano-Micro Letters 发布于 2022-02-22
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Nano-Micro Letters 发布于 2022-02-20
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Nano-Micro Letters 发布于 2022-02-20
个人简介 Profile 刘少华博士毕业于上海交通大学应用化学专业,上海市“优博”、上海市高层次人才入选者。2014年2月至2017年2月先后在德国马普高分子研究所和德累斯顿工业大学从事博士后工作研究。2017年3月加盟华东师范大学物理与电子学院材料系。刘少华...
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Nano-Micro Letters 发布于 2022-02-20
A MXene-Based Bionic Cascaded-Enzyme Nanoreactor for Tumor Phototherapy/Enzyme Dynamic Therapy and Hypoxic Activated ChemotherapyXiaoge Zhan...
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Nano-Micro Letters 发布于 2022-02-15
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Nano-Micro Letters 发布于 2022-02-15
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Nano-Micro Letters 发布于 2022-02-09
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Nano-Micro Letters 发布于 2022-01-19
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Nano-Micro Letters 发布于 2022-01-19
Biomass‑Derived Carbon Heterostructures Enable Environmentally Adaptive Wideband Electromagnetic Wave AbsorbersZhichao Lou, Qiuyi Wang, Ufuo...
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