液态金属脱合金反应(Liquid Metal Dealloying,LMD)是一种基于熔融金属液中合金各组分与金属液反应性不同(混合焓正负关系)而产生的一种选择性溶解反应,是一种新型的多孔材料及复合材料的制备手段。本文首先从液态金属脱合金反应的概念...液态金属脱合金反应(Liquid Metal Dealloying,LMD)是一种基于熔融金属液中合金各组分与金属液反应性不同(混合焓正负关系)而产生的一种选择性溶解反应,是一种新型的多孔材料及复合材料的制备手段。本文首先从液态金属脱合金反应的概念和原理入手,详细介绍了此反应应用于纳米多孔材料与金属基复合材料的制备案例。在多孔材料制备方面,液态金属脱合金反应不仅可满足贱金属类纳米多孔材料的高效生产需求,还可通过脱合金反应条件调控孔隙结构。在复合材料制备方面,脱合金反应可使得析出相尺寸更加细小,分布更加均匀弥散,从而提高复合材料的综合力学性能。最后,本文对液态金属脱合金反应的最新应用与机理研究进行了概述,并对此类反应的未来应用进行了展望。展开更多
Formamidinium lead bromide(FAPbBr_(3))nanocrystals(NCs)have been considered to be a good optoelectronic material due to their pure green emission,excellent stability and superior carrier transport characteristics.Howe...Formamidinium lead bromide(FAPbBr_(3))nanocrystals(NCs)have been considered to be a good optoelectronic material due to their pure green emission,excellent stability and superior carrier transport characteristics.However,two-photon pumped amplified spontaneous emission(ASE)and the corresponding nonlinear optical properties of FAPbBr_(3) NCs are scarcely revealed.Herein,we synthesized colloidal FAPbBr_(3) NCs with different sizes by changing the molar ratio of FABr/PbBr_(2) in the precursor solution,using ligand assisted precipitation(LARP)technology at room temperature.Photoluminescence(PL)and time resolved photoluminescence(TRPL)spectroscopy were measured to characterize their ASE properties.And their nonlinear optical properties were studied through the Zscan technique and the two-photon excited fluorescence method.The stimulated emission properties including oneand two-photon pumped ASE have been realized from FAPbBr_(3) NCs.With large two-photon absorption coefficient(0.27 cm/GW)and high non-linear absorption cross-section(7.52×10^(5) GM),ASE with threshold as low as 9.8μJ/cm^(2) and 487μJ/cm^(2) have been obtained from colloidal FAPbBr_(3) NCs using one-and two-photon excitations.These results indicate that as a new possible green-emitting frequency-upconversion material with low thresholds,FAPbBr_(3) NCs hold great potential in the development of high-performance two-photon pump lasers.展开更多
文摘液态金属脱合金反应(Liquid Metal Dealloying,LMD)是一种基于熔融金属液中合金各组分与金属液反应性不同(混合焓正负关系)而产生的一种选择性溶解反应,是一种新型的多孔材料及复合材料的制备手段。本文首先从液态金属脱合金反应的概念和原理入手,详细介绍了此反应应用于纳米多孔材料与金属基复合材料的制备案例。在多孔材料制备方面,液态金属脱合金反应不仅可满足贱金属类纳米多孔材料的高效生产需求,还可通过脱合金反应条件调控孔隙结构。在复合材料制备方面,脱合金反应可使得析出相尺寸更加细小,分布更加均匀弥散,从而提高复合材料的综合力学性能。最后,本文对液态金属脱合金反应的最新应用与机理研究进行了概述,并对此类反应的未来应用进行了展望。
文摘Formamidinium lead bromide(FAPbBr_(3))nanocrystals(NCs)have been considered to be a good optoelectronic material due to their pure green emission,excellent stability and superior carrier transport characteristics.However,two-photon pumped amplified spontaneous emission(ASE)and the corresponding nonlinear optical properties of FAPbBr_(3) NCs are scarcely revealed.Herein,we synthesized colloidal FAPbBr_(3) NCs with different sizes by changing the molar ratio of FABr/PbBr_(2) in the precursor solution,using ligand assisted precipitation(LARP)technology at room temperature.Photoluminescence(PL)and time resolved photoluminescence(TRPL)spectroscopy were measured to characterize their ASE properties.And their nonlinear optical properties were studied through the Zscan technique and the two-photon excited fluorescence method.The stimulated emission properties including oneand two-photon pumped ASE have been realized from FAPbBr_(3) NCs.With large two-photon absorption coefficient(0.27 cm/GW)and high non-linear absorption cross-section(7.52×10^(5) GM),ASE with threshold as low as 9.8μJ/cm^(2) and 487μJ/cm^(2) have been obtained from colloidal FAPbBr_(3) NCs using one-and two-photon excitations.These results indicate that as a new possible green-emitting frequency-upconversion material with low thresholds,FAPbBr_(3) NCs hold great potential in the development of high-performance two-photon pump lasers.