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Ab-initio investigation of hydrogen sorption in Ti functionalized modified calix[4]pyrrole-benzene

机译:TI官能化改性胶中氢吸收的AB-INITIO调查[4]吡咯 - 苯

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Hydrogen is an ecofriendly and affordable alternative for fossil fuels. Storage of hydrogen with high hydrogen weight percentage is the prime obstacle to use it as a fuel. The hydrogen storage capacity in Ti functionalized modified calix[4]pyrrole-benzene is explored using density functional theory. Hydrogens are sequentially adsorbed over functionalized Ti atoms as well as over the pi - complexes of acetylenic linkages and pyrrole rings. The host stores 28 H-2 with a maximum H wt% of 10.1 and sorption energies in the range of 0.50-0.25 eV. Mechanism of the quasi-molecular adsorption is explained through the analyses of electrostatic potential, distance parameters, and charges. Findings of molecular dynamics, van 't Hoff desorption analysis, and the occupation number prove that the host is thermally stable and stores H-2 reversibly. Ti functionalized modified calix[4] pyrrole-benzene proves to be a potential hydrogen storage candidate fulfilling the 2020 targets set by the US, DOE. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:氢是化石燃料的生态友好和实惠的替代品。用高氢重量百分比储存氢是将其作为燃料使用的占障碍。使用密度泛函理论探索Ti官能化改性胶中的储氢容量[4]吡咯 - 苯。氢化液被依次吸附在官能化的Ti原子上以及乙酰织物键和吡咯环的Pi络合物上。宿主存储28 H-2,最大Hwt%的10.1%,吸附能量在0.50-0.25eV的范围内。通过静电势,距离参数和电荷分析来解释准分子吸附的机制。分子动力学,VAN'T HOFF解吸分析的调查结果证明主机是热稳定的,可逆地存储H-2。 Ti官能化改性Calix [4]吡咯 - 苯被证明是潜在的储氢候选者,满足美国携带的2020个目标。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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