Butler Jason R, Wills Jon B, Mitchem Laura, Burnham Daniel R, McGloin David, Reid Jonathan P
School of Chemistry, University of Bristol, Bristol, UKBS8 1TS.
Lab Chip. 2009 Feb 21;9(4):521-8. doi: 10.1039/b814545h. Epub 2008 Nov 19.
Arrays of optically tweezed aerosol droplets, each of sub-picolitre volume, are manipulated by holographic optical tweezers and characterised by cavity enhanced Raman spectroscopy. A spatial light modulator is employed to generate arrays of optical traps from a single laser beam and to control the array dimensions and relative trap positions. Comparative hygroscopicity measurements are performed concurrently on five trapped droplets by monitoring the evolving size of each droplet. This is extended to the controlled coalescence of an array of droplets accompanied by spectroscopic measurements. These data represent the first ever simultaneous measurements of the evolving composition and size of an array of aerosol droplets. We consider the possibility of using aerosol arrays as a platform for studying chemical reactions in sub-picolitre volumes, exploiting the versatility of aerosol arrays for performing optical digital microfluidic operations accompanied by micro-total analysis.
由全息光镊操纵并通过腔增强拉曼光谱表征的是亚皮升体积的光镊捕获的气溶胶液滴阵列。使用空间光调制器从单个激光束生成光阱阵列,并控制阵列尺寸和相对阱位置。通过监测每个液滴不断变化的尺寸,同时对五个捕获的液滴进行比较吸湿性测量。这扩展到了液滴阵列的受控聚结以及光谱测量。这些数据代表了首次同时测量气溶胶液滴阵列不断变化的组成和尺寸。我们考虑了利用气溶胶阵列作为研究亚皮升体积化学反应的平台的可能性,利用气溶胶阵列的多功能性来执行伴随微全分析的光学数字微流体操作。