Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where Ya-Ru Pan is active.

Publication


Featured researches published by Ya-Ru Pan.


Molecular Physics | 2008

Theoretical study and rate constant calculation for the O(3P) + C2H5CN reaction

Jingyu Sun; Yi-Zhen Tang; Hao Sun; Ya-Ru Pan; Xiu-Juan Jia; Xiu-Mei Pan; Rongshun Wang

The complicated microscopic reaction mechanisms of O(3P) with C2H5CN on the ground electronic state energy surface have been investigated at the G3(MP2) level of theory based on the geometric parameters optimized at the B3LYP/6-311 + G(d, p) level. Two kinds of H-abstraction and addition–elimination channels are considered, namely methylene-H abstraction, methyl-H abstraction, C-addition/elimination and N-addition/elimination. The kinetics of the title reaction have been studied using the TST and multichannel RRKM methodologies over a wide temperature range of 200–2000 K. The results show that the methylene-H abstraction process is predominant for the whole reaction. With an increase of temperature, H-abstraction from the methyl position channel should be taken into account. The C-addition/elimination process provides a few contributions to the title reaction compared with two kinds of H-abstraction channels over the whole temperature region and the N-addition/elimination channel can be negligible due to the high entrance barrier and unstable products.


Molecular Physics | 2007

Theoretical study of the hydrogen abstraction reaction of CH3OH with NCO

Yi-Zhen Tang; H. Sun; Ya-Ru Pan; Xiu-Mei Pan; R.S. Wang

A direct dynamics method is employed to study the mechanism and kinetics of the hydrogen abstraction reaction of CH3OH with NCO. The optimized geometries and frequencies of the stationary points and the minimum-energy paths (MEPs) are obtained at the MP2/6-311G(d,p) level. In order to obtain more accurate potential energy surface (PES) information and provide more credible energy data for kinetic calculation, the single-point energies along the MEPs are further computed at QCISD(T)/6-311+G(d,p) and G3MP2 levels. The rate constants for two channels, the methyl-H abstraction channel and hydroxyl-H abstraction channel, are calculated by canonical variational transition state theory (CVT) with small-curvature tunneling (SCT) contributions over the wide temperature region 220–1500 K. The theoretical overall rate constants are in good agreement with the available experimental data. For the title reaction, the methyl-H abstraction channel is dominant, while the hydroxyl-H abstraction channel is negligible over the whole temperature region.


Molecular Physics | 2008

Theoretical study of mechanisms for NCO with CH3 reaction

Ya-Ru Pan; Yi-Zhen Tang; Jingyu Sun; Hao Sun; Rongshun Wang

A detailed computational study has been performed at the QCISD(T)/6-311++G(d,p)//B3LYP/6-311++G(d,p) level for the NCO with CH3 reaction by constructing singlet and triplet potential energy surfaces (PES). The results show that the title reaction is more favorable for the singlet PES than the triplet PES. On the singlet PES, the dominant channel is the barrierless addition of the O or N atom to the C atom of the methyl group to form CH3NCO (IM1) and CH3OCN (IM2). On the triplet PES, the favorable channel is the barrierless addition of the N atom to the C atom of the methyl group to form an intermediate CH3NCO (3IM2), which then undergoes a N–C bond scission process to give out CH3N + CO.


Molecular Physics | 2008

Direct ab initio dynamics calculations of the reaction rate for the hydrogen abstraction reaction of NCO with CH4 and C2H6

Ya-Ru Pan; Yi-Zhen Tang; Jingyu Sun; Hao Sun; Rongshun Wang

The kinetics of the hydrogen abstraction reactions NCO + CH4 (R1) and NCO + C2H6 (R2) have been studied over a wide temperature range. The minimum energy paths (MEPs) were calculated at the MP2/cc-pVDZ level and single-point calculations were refined at the G3MP2 level. The rate constants for the title reactions were calculated using canonical variational transition state theory (CVT) with small-curvature tunneling (SCT) contributions. The fitted three-parameter formulae are k 1 = 2.52 × 10−22 T 3.46 exp(2466/T) and k 2 = 9.8 × 10−22 T 3.2 exp(411.8/T) cm3 molecule−1 s−1 for (R1) and (R2), respectively. The calculated rate constants were found to be in good agreement with the available experimental data. Deuterium kinetic isotope effects were also investigated. Both reactions show a significant kinetic isotope effect in the low-temperature range.


Chemical Physics Letters | 2008

Mechanistic and kinetic study of the OH + C2H5CN reaction

Jingyu Sun; Yi-Zhen Tang; Hao Sun; Ya-Ru Pan; Xiu-Juan Jia; Xiu-Mei Pan; Rongshun Wang


Chemical Physics | 2008

Ab initio/DFT theory and multichannel RRKM study on the mechanisms and kinetics for the CH3S + CO reaction

Yi-Zhen Tang; Ya-Ru Pan; Jingyu Sun; Hao Sun; Rongshun Wang


International Journal of Quantum Chemistry | 2007

DFT studies on the multi‐channel reaction of CH3S+NO2

Yi-Zhen Tang; Hao Sun; Ya-Ru Pan; Xiu-Mei Pan; Rongshun Wang


Chemical Physics Letters | 2008

Theoretical study on the hydrogen abstraction reaction of CH3CH2F (HFC-161) with Cl atom

Hao Sun; Hongqing He; Ya-Ru Pan; Xiu-Mei Pan; Ze-Sheng Li; Rongshun Wang


Chemical Physics | 2007

Theoretical study of H-abstraction reaction of C2H5OH with NCO

Yi-Zhen Tang; Hao Sun; Jingyu Sun; Ya-Ru Pan; Ze-Sheng Li; Rongshun Wang


Theoretical Chemistry Accounts | 2008

Theoretical studies on the mechanisms of NCCO + O2 reaction

Yi-Zhen Tang; Jingyu Sun; Hao Sun; Ya-Ru Pan; Rongshun Wang

Collaboration


Dive into the Ya-Ru Pan's collaboration.

Top Co-Authors

Avatar

Rongshun Wang

Northeast Normal University

View shared research outputs
Top Co-Authors

Avatar

Yi-Zhen Tang

Northeast Normal University

View shared research outputs
Top Co-Authors

Avatar

Hao Sun

Northeast Normal University

View shared research outputs
Top Co-Authors

Avatar

Jingyu Sun

Northeast Normal University

View shared research outputs
Top Co-Authors

Avatar

Xiu-Mei Pan

Northeast Normal University

View shared research outputs
Top Co-Authors

Avatar

Xiu-Juan Jia

Northeast Normal University

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar

H. Sun

Northeast Normal University

View shared research outputs
Top Co-Authors

Avatar
Researchain Logo
Decentralizing Knowledge