Abstract is: Mario José Molina-Pasquel Henríquez (19 March 1943 – 7 October 2020), known as Mario Molina, was a Mexican chemist. He played a pivotal role in the discovery of the Antarctic ozone hole, and was a co-recipient of the 1995 Nobel Prize in Chemistry for his role in discovering the threat to the Earth's ozone layer from chlorofluorocarbon (CFC) gases. He was the first Mexican-born scientist to receive a Nobel Prize in Chemistry and the third Mexican born person to receive the Nobel award. In his career, Molina held research and teaching positions at University of California, Irvine, California Institute of Technology, Massachusetts Institute of Technology, University of California, San Diego, and the Center for Atmospheric Sciences at the Scripps Institution of Oceanography. Molina was also Director of the Mario Molina Center for Energy and Environment in Mexico City. Molina was a climate policy advisor to the President of Mexico, Enrique Peña Nieto. On 7 October 2020, the National Autonomous University of Mexico announced that Molina had died of a heart attack.
human | Q5 |
P2381 | Academic Tree ID | 50510 |
P268 | Bibliothèque nationale de France ID | 14440830c |
P5019 | Brockhaus Enzyklopädie online ID | molina-mario-jose |
P8179 | Canadiana Name Authority ID | ncf11469337 |
P11496 | CiNii Research ID | 1140282266818418688 |
P1417 | Encyclopædia Britannica Online ID | biography/Mario-Molina |
P3219 | Encyclopædia Universalis ID | mario-molina |
P2163 | FAST ID | 1570690 |
P535 | Find a Grave memorial ID | 216474298 |
P646 | Freebase ID | /m/02hvd6 |
P4872 | GEPRIS person ID | 1900745 |
P227 | GND ID | 1029801800 |
P4431 | Google Doodle | mario-molinas-80th-birthday |
P12385 | Gran Enciclopèdia Catalana ID | mario-molina |
P1296 | Gran Enciclopèdia Catalana ID (former scheme) | 0247860 |
P11514 | Great Russian Encyclopedia portal ID | molina-mario-9eb7da |
P7982 | Hrvatska enciklopedija ID | 41602 |
P269 | IdRef ID | 109964861 |
P213 | ISNI | 0000000120248124 |
P8189 | J9U ID | 987007434376805171 |
P6385 | Krugosvet article | nauka_i_tehnika/himiya/MOLINA_MARIO.html |
P8313 | Lex ID | Mario_Molina |
P244 | Library of Congress authority ID | nb2002018877 |
P10242 | Lur Encyclopedic Dictionary ID | 04244/eu_m_2895/m2895 |
P1284 | Munzinger person ID | 00000021628 |
P271 | NACSIS-CAT author ID | DA15422093 |
P5380 | National Academy of Sciences member ID | 52447 |
P4619 | National Library of Brazil ID | 000600738 |
P5034 | National Library of Korea ID | KAC2021S7330 |
P950 | National Library of Spain ID | XX6225467 |
P1006 | Nationale Thesaurus voor Auteursnamen ID | 242167721 |
P3222 | NE.se ID | mario-molina |
P691 | NL CR AUT ID | jx20110608022 |
P1695 | NLP ID (old) | a0000003856181 |
P1263 | NNDB people ID | 793/000100493 |
P8024 | Nobel Laureate API ID | 282 |
P1015 | NORAF ID | 9074023 |
P1207 | NUKAT ID | n97028573 |
P7305 | Online PWN Encyclopedia ID | 3942800 |
P496 | ORCID iD | 0000-0003-2339-3225 |
P12582 | Oxford Reference overview ID | 20110810105422496 |
P9640 | PAS member ID | deceased/molina |
P6551 | Physics History Network ID | 11806011 |
P7293 | PLWABN ID | 9810633977505606 |
P396 | SBN author ID | SBNV099701 |
P1153 | Scopus author ID | 7202281109 |
P3430 | SNAC ARK ID | w6c94k4p |
P4342 | Store norske leksikon ID | Mario_Molina |
P3365 | Treccani ID | mario-jose-molina |
P214 | VIAF ID | 43806068 |
P10832 | WorldCat Entities ID | E39PBJv4pjqB7b4ck4MTBtKPQq |
P512 | academic degree | doctorate | Q849697 |
P6424 | affiliation string | Centro Mario Molina | |
P166 | award received | Presidential Medal of Freedom | Q17144 |
Nobel Prize in Chemistry | Q44585 | ||
Willard Gibbs Award | Q902788 | ||
Tyler Prize for Environmental Achievement | Q1892257 | ||
Heinz Award | Q5700571 | ||
Newcomb Cleveland Prize | Q7017608 | ||
Volvo Environment Prize | Q7941307 | ||
Knight of the Legion of Honour | Q10855271 | ||
Max Planck Research Award | Q1912039 | ||
NASA Exceptional Scientific Achievement Medal | Q17091138 | ||
Grand Cross of the Order of Isabella the Catholic | Q17365974 | ||
Fellow of the American Physical Society | Q41955909 | ||
honorary doctor of the University of Madrid Complutense | Q50621171 | ||
Polanyi Medal | Q56569416 | ||
honorary doctorate from the Pontifical Catholic University of Peru | Q97446358 | ||
Camille Dreyfus Teacher-Scholar Awards | Q107299278 | ||
honorary doctor of the University of Miami | Q110471679 | ||
Great Immigrants Award | Q121359767 | ||
P1477 | birth name | Mario José Molina Henríquez | |
P509 | cause of death | myocardial infarction | Q12152 |
P27 | country of citizenship | United States of America | Q30 |
Mexico | Q96 | ||
P1343 | described by source | Mario Molina, 77, Dies; Sounded an Alarm on the Ozone Layer | Q123551595 |
P1889 | different from | Mario Molina | Q1898929 |
P184 | doctoral advisor | George C. Pimentel | Q510601 |
P69 | educated at | University of California, Berkeley | Q168756 |
University of Freiburg | Q153987 | ||
National Autonomous University of Mexico | Q222738 | ||
P108 | employer | Massachusetts Institute of Technology | Q49108 |
Jet Propulsion Laboratory | Q189325 | ||
University of California, San Diego | Q622664 | ||
University of California, Irvine | Q868421 | ||
P734 | family name | Molina | Q1158341 |
Molina | Q1158341 | ||
Molina | Q1158341 | ||
Pasquél | Q56644140 | ||
Pasquél | Q56644140 | ||
Pasquél | Q56644140 | ||
P101 | field of work | chemistry | Q2329 |
physical chemistry | Q11372 | ||
chemical engineering | Q83588 | ||
P735 | given name | Mario | Q3362622 |
Mario | Q3362622 | ||
Mario José | Q56644085 | ||
Mario José | Q56644085 | ||
P1412 | languages spoken, written or signed | Spanish | Q1321 |
English | Q1860 | ||
P463 | member of | American Association for the Advancement of Science | Q40358 |
National Academy of Sciences | Q270794 | ||
Mexican Academy of Sciences | Q820551 | ||
Pontifical Academy of Sciences | Q938622 | ||
National Academy of Medicine | Q4352382 | ||
Colegio Nacional | Q5142859 | ||
P1559 | name in native language | Mario Molina | |
P103 | native language | Spanish | Q1321 |
P106 | occupation | engineer | Q81096 |
chemist | Q593644 | ||
university teacher | Q1622272 | ||
P5008 | on focus list of Wikimedia project | WikiProject Climate change | Q15305047 |
P1344 | participant in | World Economic Forum Annual Meeting 2015 | Q114717231 |
P1950 | second family name in Spanish name | Henriquez | Q21509377 |
P21 | sex or gender | male | Q6581097 |
Q59382505 | A missing sink for gas-phase glyoxal in Mexico City: Formation of secondary organic aerosol |
Q92355462 | Adverse organogenesis and predisposed long-term metabolic syndrome from prenatal exposure to fine particulate matter |
Q57264191 | Air Quality in Selected Megacities |
Q89636602 | An unexpected catalyst dominates formation and radiative forcing of regional haze |
Q82802284 | Aqueous aerosol may build up an elevated upper tropospheric ice supersaturation and form mixed-phase particles after freezing |
Q30801255 | Assessing the effects of anthropogenic aerosols on Pacific storm track using a multiscale global climate model |
Q74330393 | Atmospheric chemistry of HFE-7500 [n-C3F7CF(OC2H5)CF(CF3)2]: reaction with OH radicals and Cl atoms and atmospheric fate of n-C3F7CF(OCHO*)CF(CF3)2 and n-C3F7CF(OCH2CH2O*)CF(CF3)2 radicals |
Q47336479 | Atmospheric new particle formation enhanced by organic acids |
Q60169693 | Atmospheric oxidation in the Mexico City Metropolitan Area (MCMA) during April 2003 |
Q30447485 | Bringing the ocean into the laboratory to probe the chemical complexity of sea spray aerosol. |
Q96130496 | Carbenium ion-mediated oligomerization of methylglyoxal for secondary organic aerosol formation |
Q57046105 | Changes in Emissions of Ozone-Depleting Substances from China Due to Implementation of the Montreal Protocol |
Q46051335 | Characterization of aerosols containing Zn, Pb, and Cl from an industrial region of Mexico City. |
Q34169604 | Climate change. Preserving Montreal Protocol climate benefits by limiting HFCs |
Q59770671 | Comparative Analysis of Urban Atmospheric Aerosol by Particle-Induced X-ray Emission (PIXE), Proton Elastic Scattering Analysis (PESA), and Aerosol Mass Spectrometry (AMS) |
Q60021236 | Detection of particle-phase polycyclic aromatic hydrocarbons in Mexico City using an aerosol mass spectrometer |
Q58036932 | Different freezing behavior of millimeter- and micrometer-scaled (NH4)2SO4/H2O droplets |
Q60170372 | Distribution, magnitudes, reactivities, ratios and diurnal patterns of volatile organic compounds in the Valley of Mexico during the MCMA 2002 & 2003 field campaigns |
Q44102319 | Effect of relative humidity on OH uptake by surfaces of atmospheric importance |
Q34709323 | Elucidating severe urban haze formation in China |
Q57540847 | Experimental Study for the Identification of the Nascent Product of OH Heterogeneous Reaction with NaCl using Chemical Ionization Mass Spectrometry |
Q102070125 | Experimental study on HCl uptake by MgCl2 and sea salt under humid conditions |
Q57540842 | Experimental study on the release of Cl2 from NaCl upon OH radical uptake |
Q57689481 | Ferroelectric Transition Vanishes in (NH4)2SO4 Precipitated in Small-Sized Aqueous Droplets |
Q58065244 | Formation of Low-Temperature Cirrus from H2SO4/H2O Aerosol Droplets |
Q82700374 | Formation of mixed-phase particles during the freezing of polar stratospheric ice clouds |
Q36143643 | Freezing and glass transitions upon cooling and warming and ice/freeze-concentration-solution morphology of emulsified aqueous citric acid |
Q63488612 | Heterogeneous Freezing of Aqueous Particles Induced by Crystallized (NH4)2SO4, Ice, and Letovicite |
Q63488611 | Heterogeneous nucleation of ice in (NH4)2SO4-H2O particles with mineral dust immersions |
Q38924613 | Hydrofluorocarbon (HFC) Emissions in China: An Inventory for 2005-2013 and Projections to 2050. |
Q34686941 | Hydrogen chloride-induced surface disordering on ice. |
Q63488614 | Ice Formation in (NH4)2SO4−H2O Particles |
Q96301952 | Identifying airborne transmission as the dominant route for the spread of COVID-19 |
Q57118396 | Improving air quality in megacities: Mexico City case study |
Q30383364 | Improving our fundamental understanding of the role of aerosol-cloud interactions in the climate system. |
Q64235151 | In utero ultrafine particulate matter exposure causes offspring pulmonary immunosuppression |
Q28763167 | Intensification of Pacific storm track linked to Asian pollution |
Q42697650 | Interaction of hydrogen chloride with ice surfaces: the effects of grain size, surface roughness, and surface disorder |
Q57270503 | Ion transmission and ion/molecule separation using an electrostatic ion guide in chemistry ionization mass spectrometry |
Q28603826 | Markedly enhanced absorption and direct radiative forcing of black carbon under polluted urban environments |
Q58684730 | Mass Accommodation Coefficient of H2SO4Vapor on Aqueous Sulfuric Acid Surfaces and Gaseous Diffusion Coefficient of H2SO4in N2/H2O |
Q57270166 | Megacities and Atmospheric Pollution |
Q30941956 | Megacities and atmospheric pollution |
Q40405011 | Modeling inorganic aerosols and their response to changes in precursor concentration in Mexico City |
Q35497312 | Multiple glass transitions and freezing events of aqueous citric acid |
Q56256576 | Nobel laureates' letter to President Bush |
Q45973231 | OH, HO2, and ozone gaseous diffusion coefficients. |
Q57540858 | On OH uptake by sea salt under humid conditions |
Q44609742 | Oxidation mechanism of aromatic peroxy and bicyclic radicals from OH-toluene reactions |
Q27888719 | Persistent sulfate formation from London Fog to Chinese haze |
Q63488616 | Phase Transitions in Aqueous NH4HSO4Solutions |
Q60363064 | Phase transitions of sea-salt/water mixtures at low temperatures: Implications for ozone chemistry in the polar marine boundary layer |
Q47844247 | Platinum group elements in airborne particles in Mexico City |
Q58684734 | Pressure and Temperature Dependence of the Gas-Phase Reaction of SO3with H2O and the Heterogeneous Reaction of SO3with H2O/H2SO4Surfaces |
Q56656875 | Production of chlorine oxide (Cl2O2) from the self-reaction of the chlorine oxide (ClO) radical |
Q57270486 | Rate constants and isomeric branching of the Cl–isoprene reaction |
Q40487185 | Reassessing the atmospheric oxidation mechanism of toluene |
Q89517443 | Remarkable nucleation and growth of ultrafine particles from vehicular exhaust |
Q60021272 | Secondary organic aerosol formation from anthropogenic air pollution: Rapid and higher than expected |
Q84765141 | Single freezing and triple melting of micrometre-scaled (NH4)2SO4/H2O droplets |
Q43103112 | Solution coating around ice particles of incipient cirrus clouds |
Q63488613 | The Reaction Probability of OH on Organic Surfaces of Tropospheric Interest |
Q57270490 | Theoretical Study of Chloroalkenylperoxy Radicals |
Q36805533 | Traffic-related air pollution exposures and changes in heart rate variability in Mexico City: a panel study |
Q50086167 | Traffic-related exposures, airway function, inflammation, and respiratory symptoms in children |
Q98475601 | Understanding transmission and intervention for the COVID-19 pandemic in the United States |
Q34312546 | Vehicle traffic as a source of particulate polycyclic aromatic hydrocarbon exposure in the Mexico City metropolitan area |
Q30831515 | Visualization data on the freezing process of micrometer-scaled aqueous citric acid drops |
Q30606771 | Visualization of freezing process in situ upon cooling and warming of aqueous solutions. |
Q84928982 | Why does large relative humidity with respect to ice persist in cirrus ice clouds? |
Q104063723 | Mario J. Molina (1943-2020) |
Q123551595 | Mario Molina, 77, Dies; Sounded an Alarm on the Ozone Layer |
Q264990 | (9680) Molina | named after | P138 |
Q510601 | George C. Pimentel | doctoral student | P185 |
Q1898929 | Mario Molina | different from | P1889 |
Q4152020 | Humanism and Its Aspirations | signatory | P1891 |
Q60476050 | Xyleco | board member | P3320 |
Search more.