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Yu, Fangqun - Atmospheric Sciences Research Center & Department of Earth and Atmospheric Sciences, State University of New York at Albany
Quantum-mechanical solution to fundamental problems of classical theory of water vapor nucleation
Modified KelvinThomson equation considering ion-dipole interaction: Comparison with observed ion-clustering enthalpies and entropies
Water Homogeneous Nucleation: Importance of Clustering Thermodynamics
Anomalously Large Difference in Dipole Moment of Isomers with Nearly Identical Thermodynamic Stability
Thermochemistry of (H2 A DFT Study
Atmospheric Environment 38 (2004) 14171423 Measurements of ion concentration in gasoline and diesel
Strong hydrogen bonding between atmospheric nucleation precursors and common organics
Atmospheric Environment 40 (2006) 75797588 Role of the binary H2SO4H2O homogeneous nucleation in the
Quantum Nature of the Sign Preference in Ion-Induced Nucleation Alexey B. Nadykto,1,* Anas Al Natsheh,2,3
Nadykto et al. Reply: In our Letter [1], we have applied a quantum approach for studying the sign preference and
Effect of ammonia on new particle formation: A kinetic H2SO4-H2O-NH3 nucleation model constrained by laboratory measurements
Uptake of neutral polar vapor molecules by charged clusters//particles: Enhancement due to dipole-charge interaction
Nucleation rate of particles in the lower atmosphere: Estimated time needed to reach pseudo-steady state and sensitivity to H2SO4 gas
Altitude variations of cosmic ray induced production of aerosols: Implications for global cloudiness and climate
Stabilization of H2 by Organic Acids
Impact of aerosol on sea surface temperature over the subtropical Atlantic Ocean: A potential trigger factor of the NAO phase
Charged State of Freshly Nucleated Particles: Implications for Nucleation Mechanisms
Binary H2SO4-H2O homogeneous nucleation based on kinetic quasi-unary nucleation model: Look-up tables
Quasi-unary homogeneous nucleation of H2SO4-H2O Fangqun Yua
Improved quasi-unary nucleation model for binary H2SO4H2O homogeneous nucleation
Dipole Moment of Condensing Monomers: A New Parameter Controlling the Ion-Induced Nucleation
Ion-mediated nucleation in the atmosphere: Key controlling parameters, implications, and look-up table
Diurnal and Seasonal Variations of Ultrafine Particle Formation in
Ion-mediated Nucleation as an Important Source of Global Tropospheric Aerosols
Chemiion evolution in motor vehicle exhaust: Further evidence of its role in nanoparticle formation