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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Excited state proton transfer reaction of two new intramolecularly hydrogen bonded Schiff bases at room temperature and 77K
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Excited state proton transfer reaction of two new intramolecularly hydrogen bonded Schiff bases at room temperature and 77K

机译:两种新的分子内氢键席夫碱在室温和77K下的激发态质子转移反应

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Two new orthohydroxy Schiff bases, 7-phenylsalicylidene benzylamine (PSBA) and 7-ethylsalicylideneaniline (ESA) have been synthesized. The excited state intramolecular proton transfer (ESIPT) and the structure of PSBA and ESA in its crystalline form and in the solvents n-hexane, n-heptane and 1,4-dioxane have been investigated by means of absorption, emission and nanosecond spectroscopy at room temperature and 77K. One ground state species has been detected both in neutral and basic solutions of both PSBA and ESA: the cis-enol form with an intramolecular hydrogen bond. The ESIPT and formation of keto tautomer are evidenced by a large Stokes shifted emission ( similar to 12 000 cm(-1)) at room temperature only in the case of ESA. On the other hand the keto tautomer is the predominant species at 77K in a solid matrix and as a solid sample at room temperature both in the case of ESA and PSBA. In the case of both ESA and PSBA the more intense, higher energy emission is due to the species which has not undergone ESIPT and attributed mainly due to cis-enol form. The trans-enol form is also observed by changing the excitation wavelength. Both the compounds are found to undergo a structural change to a zwitterionic and intermolecular hydrogen bonded form in the presence of a strong base like triethylamine, From the nanosecond measurements and quantum yield of fluorescence we have estimated the decay rates of proton transfer reaction in the case of PSBA. Our theoretical calculation at the AM1 level of approximation shows that the ground singlet state has a rather large activation barrier both in the case of PSBA and ESA. The barrier height is much lower on the corresponding excited singlet surface only in the case of ESA. The process is predicted to be endothermic in the ground state and exothermic in the excited singlet state. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 46]
机译:合成了两个新的正羟基席夫碱,7-苯基水杨基苄胺(PSBA)和7-乙基水杨基苯胺(ESA)。通过吸收,发射和纳秒光谱研究了激发态分子内质子转移(ESIPT)以及其结晶形式的PSBA和ESA以及在溶剂正己烷,正庚烷和1,4-二恶烷中的结构。室温和77K。在PSBA和ESA的中性和碱性溶液中均检测到一种基态物质:具有分子内氢键的顺式-烯醇形式。仅在ESA情况下,室温下才会有大的斯托克斯位移发射(类似于12000 cm(-1))证明ESIPT和酮基互变异构体的形成。另一方面,在ESA和PSBA的情况下,酮互变异构体是固态基质中77K的主要物质,在室温下是固态样品。对于ESA和PSBA而言,强度更高,能量释放更多是由于该物种未经历ESIPT,而主要归因于顺式-烯醇形式。通过改变激发波长也可以观察到反式烯醇形式。发现这两种化合物在强碱(如三乙胺)的存在下均发生结构转变为两性离子和分子间氢键形式。根据纳秒测量值和荧光的量子产率,我们估算了在这种情况下质子转移反应的衰减速率PSBA。我们在AM1近似水平上的理论计算表明,在PSBA和ESA情况下,基态单重态都具有相当大的激活势垒。仅在ESA的情况下,在相应的激发单线态表面上的势垒高度低得多。预计该过程在基态会吸热,在激发单重态会放热。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:46]

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