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采用两级反应器,将盐溶液MgCl2·6H2O、AlCl3·6H2O、ZnCl2·6H2O和沉降剂Na2CO3、NaOH进行反应成功制备出Zn2+原位掺杂型LDHs纳米晶.采用XRD、TEM、TG分析了Zn2+掺杂对MgAl-CO3 LDHs晶体结构、形貌与热稳定性的影响.结果表明:当[Mg2+ +Zn2+]/[Al3+] =2,[Mg2+]/[Zn2+] =4时,对MgAl-CO3 LDHs晶体结构影响最小,此时晶体形貌也相对较规则;原位掺杂后,95℃晶化2h为最佳晶化时间;Zn2+掺杂LDHs纳米晶在0 ~450℃范围内热稳定性降低,在450 ~550℃范围内热稳定性提高,且残渣量由46.57;提高到58.58;.  相似文献   
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Nonlinear optical frequency mixing,which describes new frequencies generation by exciting nonlinear materials with intense light field,has drawn vast interests in the field of photonic devices,material characterization,and optical imaging.Investigating and manipulating the nonlinear optical response of target materials lead us to reveal hidden physics and develop applications in optical devices.Here,we report the realization of facile manipulation of nonlinear optical responses in the example system of MoS2 monolayer by van der Waals interfacial engineering.We found that,the interfacing of monolayer graphene will weaken the exciton oscillator strength in MoS2 monolayer and correspondingly suppress the second harmonic generation(SHG)intensity to 30%under band-gap resonance excitation.While with off-resonance excitation,the SHG intensity would enhance up to 130%,which is conjectured to be induced by the interlayer excitation between MoS2 and graphene.Our investigation provides an effective method for controlling nonlinear optical properties of two-dimensional materials and therefore facilitates their future applications in optoelectronic and photonic devices.  相似文献   
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