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相位可控三相Buck型AC/AC变换器
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作者 管双峰 张友军 金宏 《电气传动》 北大核心 2019年第5期59-62,共4页
提出了相位可控三相Buck型AC/AC变换器的电路拓扑结构,该电路由3个单相Buck交流单元和三相输出滤波器构成,其滤波电容以三角形接法相连,使得3个单相Buck交流单元中3次谐波电压相互抵消,继而确保输出滤波电感中不流过3次谐波电流,在输出... 提出了相位可控三相Buck型AC/AC变换器的电路拓扑结构,该电路由3个单相Buck交流单元和三相输出滤波器构成,其滤波电容以三角形接法相连,使得3个单相Buck交流单元中3次谐波电压相互抵消,继而确保输出滤波电感中不流过3次谐波电流,在输出端得到相位可控的正弦输出线电压。详细研究了电路工作原理,给出了参数选择控制策略,在仿真分析的基础上,研制了原理样机,实验结果验证了理论分析的正确性和可行性。 展开更多
关键词 相位控制 3次谐波电压 拓扑结构 控制参数
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Atomically Precise Platinum Nanoclusters:History and Recent Advances in Synthesis,Structure,and Properties
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作者 Isha Mishra Alejandro Durand Chenjie Zeng 《Precision Chemistry》 2025年第8期401-423,共23页
Platinum is a cornerstone catalyst for various chemical and electrochemical transformations.Atomically precise platinum nanoclusters,located at the transition stage between smaller platinum-ligandcoordinationmolecules... Platinum is a cornerstone catalyst for various chemical and electrochemical transformations.Atomically precise platinum nanoclusters,located at the transition stage between smaller platinum-ligandcoordinationmolecules(<~1 nm)and larger platinumcolloidalnanoparticles(>∼3 nm),cancombine the advantages of both homogeneous and heterogeneous catalysts,serving as model systems for understanding catalytic processes.However,compared to significant advances in coinage metal nanoclusters,atomically precise platinum nanoclusters remain largely unexplored.Here,we introduce the rich history and highlight the recent renaissance of atomically precise Pt clusters,focusing on their synthesis,structures,and properties.We discuss(i)how the sizes can be precisely controlled through the redox chemistry of one-dimensional platinum carbonyl clusters,(ii)how the core structures can be diversified in three-dimensional Ptn(CO)m clusters,(iii)how the surface properties can be tailored by using various types of ligands,and(iv)recent progress in evaluating these clusters in electrochemical and thermal catalytic reactions.By bridging the gaps among conventional coordination,cluster,colloidal,and catalytic chemistry,we expect to provide some fundamental insights that are crucial for designing more efficient platinum cluster catalysts with atomic precision. 展开更多
关键词 PLATINUM Cluster Atomicprecision Sizecontrol phasecontrol Surfacecontrol Metal−ligand interaction Optical property ELECTRONICSTRUCTURE ELECTROCHEMISTRY Catalysis
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