色逼阁网页,在线看的h网导航,亚洲日韩aⅴ在线视频,小清欢在线全文阅读,AV电影网址免费观看,自拍偷拍影音先锋,多人疯狂派对欧美XXX,强奸福利社,东北女人大叫受不了了

Potential energy surface of the phot

時間:2023-04-28 19:21:14 數理化學論文 我要投稿
  • 相關推薦

Potential energy surface of the photolysis of isocyanic acid HNCO

The dissociation curves of the photolysis of the isocyanic acidHNCOHN+CO corresponding to the ground state (S0), the first triplet excited state (T1) and the first singlet excited state (S1) have been studied respectively at the UHF/6-311G** and CIS/6-311G** levels using ab initio method. The energy surface crossing points, S1/T1, T1/S0 and S1/S0, have been found and the characteristics of the energy minimum crossing point were given, based on which, the changes of the crossing points' geometries along the lower electronic energy surface and its end-result have been located according to the steepest descent principle. The computational result indicates that the photolysis of the isocyanic acid HNCOHN+CO has three competitive reaction channels ((A)-(C)), and from the kinetic piont of view, channel (A) is the most advantageous.

作 者: ZHAO Li LI Zonghe   作者單位: Department of Chemistry, Beijing Normal University, Beijing 100875, China  刊 名: 中國科學B輯(英文版)  EI SCI 英文刊名: SCIENCE IN CHINA(SCIENTIA SINICA)  年,卷(期): 2001 44(1)  分類號: O6  關鍵詞: isocyanic acid   photolysis   potential energy surface crossing  

【Potential energy surface of the phot】相關文章:

Predication of Fhhh potential in PTA wastewater treatment04-26

Biodiversity and biotechnological potential of mangrove-associated fungi04-26

Bioremediation potential of spirulina: toxicity and biosorption studies of lead04-27

Energy spectrum of fermionized bosonic atoms in optical lattices04-26

Lead adsorption capacities of different components in natural surface coatings04-26

神奇的Surface-pen-寫物作文600字04-24

The secular variation of inner zone high energy proton environment in the SAA04-26

高中英語作文:能的來源(Sources of Energy)03-01

Status of persistent organic pollutants and heavy metals in surface water of Arctic region04-27

Assessment of Cu, Pb and Hg Contamination in Bottom Sediments Of Surface Water in XuZhou04-26