Takahashi R, Kubota H, Murakami M, Yamamoto Y, Matsumoto Y, Koinuma H
Materials and Structures Laboratory, Tokyo Institute of Technology, 4259 Nagatsuda-tyo, Midori-ku, Yokohama 226-8502, Japan.
J Comb Chem. 2004 Jan-Feb;6(1):50-3. doi: 10.1021/cc030038i.
We report on a novel mask design for the combinatorial synthesis of a ternary composition spreads library, which allows such libraries to be deposited through a series of simple masks on a rotatable mount. This eliminates the use of complicated actuation of a heated substrate. In our configuration, this design leads to a standard linear phase diagram by varying the growth rate of each constituent nearly linearly from 0 to 100% at a triangular area on the substrate. Film growth occurs as a series of cycles in which one molecular layer of the material is deposited over the entire area of the spread by a synchronization of the mask movement, target exchange, and laser pulses. The technique has been applied to the synthesis of photoluminescent TbCa(4)O(BO(3))(3)-ScCa(4)O(BO(3))(3)-PrCa(4)O(BO(3))(3), demonstrating its value for the mapping of direct relationship between composition and the light-emitting property.
我们报道了一种用于三元成分扩展库组合合成的新型掩膜设计,该设计允许通过一系列简单的掩膜将此类库沉积在可旋转支架上。这消除了对加热衬底进行复杂驱动的需求。在我们的配置中,通过在衬底的三角形区域将每种成分的生长速率从0到100%几乎线性地变化,这种设计可得到标准的线性相图。薄膜生长以一系列循环的方式进行,在每个循环中,通过掩膜移动、靶材交换和激光脉冲的同步,在扩展区域的整个面积上沉积一层分子材料。该技术已应用于光致发光的TbCa(4)O(BO(3))(3)-ScCa(4)O(BO(3))(3)-PrCa(4)O(BO(3))(3)的合成,证明了其在绘制成分与发光特性之间直接关系方面的价值。