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PtCu双金属纳米材料合成及其硝基苯加氢性能研究
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作者 丁昊 曹章 《山西化工》 2022年第9期13-14,共2页
利用Cu(acac)_(2)、Cu(NO_(3))_(2)·3H_(2)O、CuCl_(2)和Cu(Ac)_(2)·H_(2)O为铜源,Pt(acac)2为铂源,在1-十八烯体系下液相还原制备出了不同的PtCu双金属纳米材料,研究了PtCu双金属纳米材料的硝基苯液相加氢性能。结果表明,合... 利用Cu(acac)_(2)、Cu(NO_(3))_(2)·3H_(2)O、CuCl_(2)和Cu(Ac)_(2)·H_(2)O为铜源,Pt(acac)2为铂源,在1-十八烯体系下液相还原制备出了不同的PtCu双金属纳米材料,研究了PtCu双金属纳米材料的硝基苯液相加氢性能。结果表明,合金化程度极大影响催化性能。 展开更多
关键词 PtCu 双金属纳米材料 硝基苯加氢
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β-环糊精与双金属石墨烯复合材料对酪氨酸对映体的电化学选择性作用 被引量:1
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作者 马骄 陈奕环 +3 位作者 杨成成 宋金奕 夏巧 傅英姿 《化学传感器》 CAS 2017年第3期41-46,共6页
选择β-环糊精(β-CD)作为手性选择剂,将其滴涂到经金铂纳米合金与还原氧化石墨烯复合材料(Au-PtNPs/rGO)修饰的玻碳电极表面,得到β-CD/Au-PtNPs/rGO修饰电极;采用差分脉冲伏安法(DPV)研究该修饰电极与酪氨酸对映体(D-或L-Tyr)的相互... 选择β-环糊精(β-CD)作为手性选择剂,将其滴涂到经金铂纳米合金与还原氧化石墨烯复合材料(Au-PtNPs/rGO)修饰的玻碳电极表面,得到β-CD/Au-PtNPs/rGO修饰电极;采用差分脉冲伏安法(DPV)研究该修饰电极与酪氨酸对映体(D-或L-Tyr)的相互作用。实验结果表明,修饰电极可分别与D-或L-Tyr作用,并呈现不同的电流响应,其中与L-Tyr作用后的峰电流值明显高于D-Tyr,二者电流差值(ΔI_p=I_(pL-Tyr)-I_(pD-Tyr))为9.5μA。在0.1 mmol/L至5.0 mmol/L范围内,酪氨酸对映体的峰电流值与其浓度呈现线性关系。此方法为电化学手性识别传感器的发展提供了一定的理论基础,具有潜在的应用价值。 展开更多
关键词 Β-环糊精 双金属纳米材料 石墨烯 酪氨酸 手性识别
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Dual-metal precursors for the universal growth of non-layered 2D transition metal chalcogenides with ordered cation vacancies 被引量:5
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作者 Junyang Tan Zongteng Zhang +16 位作者 Shengfeng Zeng Shengnan Li Jingwei Wang Rongxu Zheng Fuchen Hou Yinping Wei Yujie Sun Rongjie Zhang Shilong Zhao Huiyu Nong Wenjun Chen Lin Gan Xiaolong Zou Yue Zhao Junhao Lin Bilu Liu Hui-Ming Cheng 《Science Bulletin》 SCIE EI CAS CSCD 2022年第16期1649-1658,M0004,共11页
Two-dimensional(2D)transition metal chalcogenides(TMCs)are promising for nanoelectronics and energy applications.Among them,the emerging non-layered TMCs are unique due to their unsaturated dangling bonds on the surfa... Two-dimensional(2D)transition metal chalcogenides(TMCs)are promising for nanoelectronics and energy applications.Among them,the emerging non-layered TMCs are unique due to their unsaturated dangling bonds on the surface and strong intralayer and interlayer bonding.However,the synthesis of non-layered 2D TMCs is challenging and this has made it difficult to study their structures and properties at thin thickness limit.Here,we develop a universal dual-metal precursors method to grow non-layered TMCs in which a mixture of a metal and its chloride serves as the metal source.Taking hexagonal Fe_(1-x)S as an example,the thickness of the Fe_(1-x)S flakes is down to 3 nm with a lateral size of over 100 μm.Importantly,we find ordered cation Fe vacancies in Fe_(1-x)S,which is distinct from layered TMCs like MoS_(2) where anion vacancies are commonly observed.Low-temperature transport measurements and theoretical calculations show that 2D Fe_(1-x)S is a stable semiconductor with a narrow bandgap of60 meV.In addition to Fe_(1-x)S,the method is universal in growing various non-layered 2D TMCs containing ordered cation vacancies,including Fe_(1-x)Se,Co_(1-x)S,Cr_(1-x)S,and V_(1-x)S.This work paves the way to grow and exploit properties of non-layered materials at 2D thickness limit. 展开更多
关键词 Non-layered two-dimensional materials Transition metal chalcogenides Dual-metal precursors Chemical vapor deposition Ordered cation vacancies
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