Because techniques such as photolithography for inorganic materials are yet to have their equivalents for organic materials, multispecies patterning of functional organic materials at microscale resolution remains in development. This paper reports on a liquid droplet transfer printing method, that is, used for microscale patterning of multispecies materials. A transfer printing instrument is built with a multidimensional micropositioning stage, thereby enabling the technique to be used to pattern different materials on a single surface. The size range of the transferred liquid droplets can be tuned by manipulating the surface wettability and the gap between the surfaces of the sample and the stamp. The developed technique is used to prepare red–green–blue pixel patterns and microlenses integrated with color filters.