首页> 外文OA文献 >Luminescence tuning of MOFs via ligand to metal and metal to metal energy transfer by co-doping of 2∞Gd2Cl6(bipy)3*2bipy with europium and terbium
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Luminescence tuning of MOFs via ligand to metal and metal to metal energy transfer by co-doping of 2∞Gd2Cl6(bipy)3*2bipy with europium and terbium

机译:通过共掺杂2∞Gd2Cl6(bipy)3 * 2bipy与铕和铽共轭发光调节mOF通过配体到金属和金属到金属的能量转移

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摘要

The series of anhydrous lanthanide chlorides LnCl3, Ln=Pr–Tb, and 4,4'-bipyridine (bipy) constitute isotypic MOFs of the formula 2∞[Ln2Cl6(bipy)3]*2bipy. The europium and terbium containing compounds both exhibit luminescence of the referring trivalent lanthanide ions, giving a red luminescence for Eu3+ and a green luminescence for Tb3+ triggered by an efficient antenna effect of the 4,4'-bipyridine linkers. Mixing of different lanthanides in one MOF structure was undertaken to investigate the potential of this MOF system for colour tuning of the luminescence. Based on the gadolinium containing compound, co-doping with different amounts of europium and terbium proves successful and yields solid solutions of the formula 2∞[Gd2-x-yEuxTbyCl6(bipy)3]*2bipy (1–8), 0≤x, y≤0.5. The series of MOFs exhibits the opportunity of tuning the emission colour in-between green and red. Depending on the atomic ratio Gd:Eu:Tb, the yellow region was covered for the first time for an oxygen/carboxylate-free MOF system. In addition to a ligand to metal energy transfer (LMET) from the lowest ligand-centered triplet state of 4,4'-bipyridine, a metal to metal energy transfer (MMET) between 4f-levels from Tb3+ to Eu3+ is as well vital for the emission colour. However, no involvement of Gd3+ in energy transfers is observed rendering it a suitable host lattice ion and connectivity centre for diluting the other two rare earth ions in the solid state. The materials retain their luminescence during activation of the MOFs for microporosity.
机译:这一系列无水镧系氯化物LnCl3,Ln = Pr–Tb和4,4'-联吡啶(bipy)构成分子式为2∞[Ln2Cl6(bipy)3] * 2bipy的同型MOF。含和ter的化合物均显示出所提及的三价镧系元素离子的发光,从而通过4,4'-联吡啶连接子的有效天线效应触发了Eu3 +的红色发光和Tb3 +的绿色发光。进行了在一个MOF结构中混合不同镧系元素的研究,以研究该MOF系统在调节发光颜色方面的潜力。在含containing化合物的基础上,共掺杂不同量的euro和ter被证明是成功的,并产生了分子式为2∞[Gd2-x-yEuxTbyCl6(bipy)3] * 2bipy(1-8),0≤x的固溶体,y≤0.5。 MOF系列展示了在绿色和红色之间调整发射颜色的机会。取决于原子比Gd:Eu:Tb,黄色区域首次被无氧/无羧酸盐的MOF系统覆盖。除了从4,4'-联吡啶的最低以配体为中心的三重态从配体到金属的能量转移(LMET)之外,从Tb3 +到Eu3 +的4f级之间的金属到金属的能量转移(MMET)对于发射颜色。但是,未观察到Gd3 +参与能量转移,使其成为合适的主体晶格离子和连接中心,用于稀释固态的其他两种稀土离子。该材料在激活MOF期间保持微孔的微孔结构。

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