Spirooxazine is one of photochromic materials which find important uses in photochromic lens.optical information storage,and so on.The spirooxazine compound 6cyano1,3,3trimethylspiroindolino2,3naphthaoxazine...Spirooxazine is one of photochromic materials which find important uses in photochromic lens.optical information storage,and so on.The spirooxazine compound 6cyano1,3,3trimethylspiroindolino2,3naphthaoxazine]and 6 piperidino1,3,3trimethylspironaphthaoxazine]were synthesized with microwave irradiation.The reaction proceeded rapidly compared with conventional method and was completed in 4 min and with a high yield.展开更多
We introduce a high-density three-dimensional optical data storage approach by using a pyrryl-sub-stituted fulgide photochromic material with a method of single-beam two-photon recording and fluorescence confocal read...We introduce a high-density three-dimensional optical data storage approach by using a pyrryl-sub-stituted fulgide photochromic material with a method of single-beam two-photon recording and fluorescence confocal readout. The detailed information about the photochromic material and the experimental setup are presented. The experiments about multi-layered recording and readout are carried out with a 100-μm-thick transparent photochromic material film. The results show that the lateral resolution is better than 1 μm, and the longitudinal resolution is about 3 μm. Besides, the readout times for the recorded data aredesirable when using a readout laser power smaller than 5 mW.展开更多
文摘Spirooxazine is one of photochromic materials which find important uses in photochromic lens.optical information storage,and so on.The spirooxazine compound 6cyano1,3,3trimethylspiroindolino2,3naphthaoxazine]and 6 piperidino1,3,3trimethylspironaphthaoxazine]were synthesized with microwave irradiation.The reaction proceeded rapidly compared with conventional method and was completed in 4 min and with a high yield.
基金This work was supported by the National Key Basic Research Project (Grant No. G19990330).
文摘We introduce a high-density three-dimensional optical data storage approach by using a pyrryl-sub-stituted fulgide photochromic material with a method of single-beam two-photon recording and fluorescence confocal readout. The detailed information about the photochromic material and the experimental setup are presented. The experiments about multi-layered recording and readout are carried out with a 100-μm-thick transparent photochromic material film. The results show that the lateral resolution is better than 1 μm, and the longitudinal resolution is about 3 μm. Besides, the readout times for the recorded data aredesirable when using a readout laser power smaller than 5 mW.