Tetra(4-diazoniumbenzene)porphyrin(TDBP) was synthesized via diazo-reaction of tetra-(4-aminobenzene)porphyrin(TABP). From the analysis results of MALDI-TOF mass spectroscopy and FTIR,it was confirmed that the synthes...Tetra(4-diazoniumbenzene)porphyrin(TDBP) was synthesized via diazo-reaction of tetra-(4-aminobenzene)porphyrin(TABP). From the analysis results of MALDI-TOF mass spectroscopy and FTIR,it was confirmed that the synthesized porphyrin derivative mainly consists of tetra(4-diazoniumbenzene) porphyrin with trace tri- and di-substituted compounds. The self-assembly of TDBP with poly(styrene sulfonate)(PSS) was carried out and a novel TDBP/PSS multilayer ultrathin film on silicon substrate was obtained. The self-assembled film is very sensitive to heat and light,after heating or irradiation of UV light,the thin film becomes very stable towards polar solvents such as DMF. The coupling reaction of TDBP with phenol and the thermal stability of TDBP were also investigated preliminary. [WT5HZ]展开更多
采用阳极氧化铝(AAO)模板电化学沉积方法,合成了1种新型吡咯-(3,4-乙烯二氧噻吩)(PE)共聚物纳米线阵列薄膜,作为锂离子电池电极材料,其表现出较高的比容量(1426. 1 m A·h/g,充放电电流密度为100 m A/g)和很好的循环稳定性(在充放...采用阳极氧化铝(AAO)模板电化学沉积方法,合成了1种新型吡咯-(3,4-乙烯二氧噻吩)(PE)共聚物纳米线阵列薄膜,作为锂离子电池电极材料,其表现出较高的比容量(1426. 1 m A·h/g,充放电电流密度为100 m A/g)和很好的循环稳定性(在充放电循环300圈之后,比容量仍然保持在1400 m A·h/g以上).这种多组分共聚物纳米线阵列有可能成为下一代长寿命、高性能的锂离子电池电极材料而被广泛开发.展开更多
文摘Tetra(4-diazoniumbenzene)porphyrin(TDBP) was synthesized via diazo-reaction of tetra-(4-aminobenzene)porphyrin(TABP). From the analysis results of MALDI-TOF mass spectroscopy and FTIR,it was confirmed that the synthesized porphyrin derivative mainly consists of tetra(4-diazoniumbenzene) porphyrin with trace tri- and di-substituted compounds. The self-assembly of TDBP with poly(styrene sulfonate)(PSS) was carried out and a novel TDBP/PSS multilayer ultrathin film on silicon substrate was obtained. The self-assembled film is very sensitive to heat and light,after heating or irradiation of UV light,the thin film becomes very stable towards polar solvents such as DMF. The coupling reaction of TDBP with phenol and the thermal stability of TDBP were also investigated preliminary. [WT5HZ]
基金supported by the National Natural Science Foundation of China(21773215,J1210060)the Innovative Research Grant for Undergraduate Students of National/Zhengzhou University(201710459008)~~
文摘采用阳极氧化铝(AAO)模板电化学沉积方法,合成了1种新型吡咯-(3,4-乙烯二氧噻吩)(PE)共聚物纳米线阵列薄膜,作为锂离子电池电极材料,其表现出较高的比容量(1426. 1 m A·h/g,充放电电流密度为100 m A/g)和很好的循环稳定性(在充放电循环300圈之后,比容量仍然保持在1400 m A·h/g以上).这种多组分共聚物纳米线阵列有可能成为下一代长寿命、高性能的锂离子电池电极材料而被广泛开发.