(校內調劑)2021年吉林大學理論化學研究所物理化學調劑信息

    高校名稱 吉林大學 所在省市 吉林
    調劑專業 物理化學 是否有公費名額 未知
    發布時間 2021-03-05 截止時間 未注明

    2025考研復試標準班

    2025考研復試特訓班【1v1個性批改+模擬面試+聽口糾音】

    吉林大學理論化學研究所李吉來教授課題組2021年招收調劑碩士生

    李吉來教授簡介:男,教授,博士生導師。從事計算化學、反應機理研究。先后主持國家自然科學基金3項。

    已在《proc. natl. acad. sci.》、《j. am. chem. soc.》、《angew. chem. int. ed.》等著名學術刊物上發表學術sci論文近100篇。

    課題組主要研究方向和產出見近期論文。

    有意且第一志愿為吉林大學的同學,請向發郵件: jilai^at^jlu.edu.cn

    祝好運!

    researcherid: http://www.researcherid.com/rid/m-5210-2013

    web of science researcherid: m-5210-2013

    orcid: https://orcid.org/0000-0002-3363-9164

    近期論文 (2015-2020)

    [1]        jilai li*, caiyun geng, thomas weiske, mingfei zhou*, jun li*, helmut schwarz*
    revisiting the intriguing electronic features of the beobec carbyne and some isomers: a quantum-chemical assessment
    angew. chem. int. ed. 2020, 59, 17261╟17265. doi: 10.1002/anie.202007990.

    [2]        jilai li*, caiyun geng, thomas weiske, helmut schwarz*
    on the crucial role of isolated electronic states in the thermal reaction of rec+ with dihydrogen
    angew. chem. int. ed. 2020, 59, 9370-9376. doi: 10.1002/anie.202001599
    selected as hot paper

    [3]        jilai li*, caiyun geng, thomas weiske, helmut schwarz*
    counter-intuitive gas-phase reactivities of [v2]+ and [v2o]+ towards co2 reduction: insight from electronic structure calculations
    angew. chem. int. ed. 2020, 59, 12308-12314. doi: 10.1002/anie.202001223
    highlighted as the frontispiece article

    [4]        caiyun geng, jilai li*, thomas weiske, helmut schwarz*
    complete cleavage of the n≡n triple bond by ta2n+ via degenerate ligand exchange at ambient temperature: a perfect catalytic cycle
    proc. natl. acad. sci. usa 2019, 116, 21416╟21420. doi: 10.1073/pnas.1913664116

    [5]        caiyun geng, jilai li*, thomas weiske, helmut schwarz*
    a reaction-induced localization of spin density enables thermal c╟h bond activation of methane by pristine fec4+
    chem. eur. j. 2019, 25, 12940╟12945. doi: 10.1002/chem.201902572
    inside cover chem. eur. j. 2019, 25, 12852 doi: 10.1002/chem.201903217

    [6]        caiyun geng, thomas weiske, jilai li*, sason shaik*, helmut schwarz*
    intrinsic reactivity of diatomic 3d transition-metal carbides in the thermal activation of methane: striking electronic structure effects
    j. am. chem. soc. 2019, 141, 599-610. doi: 10.1021/jacs.8b11739

    [7]        caiyun geng, jilai li*, thomas weiske, helmut schwarz*
    ta2+ mediated ammonia synthesis from n2 and h2 at ambient temperature
    proc. natl. acad. sci. usa 2018, 115, 11680-11687. doi: 10.1073/pnas.1814610115

    [8]        caiyun geng, jilai li*, thomas weiske, helmut schwarz*
    thermal o╟h bond activation of water as mediated by heteronuclear [al2mg2o5]•+: evidence for oxygen-atom scrambling
    j. am. chem. soc. 2018, 140, 9275-9281. doi: 10.1021/jacs.8b05618

    [9]        helmut schwarz*, sason shaik*, jilai li*
    electronic effects on room-temperature, gas-phase c−h bond activations by cluster oxides and metal carbides: the methane challenge
    j. am. chem. soc. 2017, 139, 17201╟17212. doi: 10.1021/jacs.7b10139

    [10]        lei yue, jilai li*, shaodong zhou, xiaoyan sun, maria schlangen, sason shaik*, helmut schwarz*
    control of product distribution and mechanism by ligation and electric field in the thermal methane activation
    angew. chem. int. ed. 2017, 56, 10219╟10223. doi: 10.1002/anie.201703485
    selected as very important paper & back cover

    [11]        caiyun geng, jilai li*, thomas weiske, maria schlangen, sason shaik*, helmut schwarz*
    electrostatic and charge-induced methane activation by a concerted double c╟h bond insertion
    j. am. chem. soc. 2017, 139, 1684╟1689. doi: 10.1021/jacs.6b12514

    [12]        jilai li, shaodong zhou, maria schlangen, thomas weiske, helmut schwarz*
    hidden hydride transfer as a decisive mechanistic step in the reactions of the unligated gold carbide [auc]+ with methane under ambient conditions
    angew. chem. int. ed. 2016, 55, 13072╟13075. doi: 10.1002/anie.201606707.

    [13]        jilai li, shaodong zhou, jun zhang, maria schlangen, dandamudi usharani, sason shaik, helmut schwarz*
    mechanistic variants in gas-phase metal-oxide mediated activation of methane at ambient conditions
    j. am. chem. soc. 2016, 138, 11368╟11377. doi: 10.1021/jacs.102607246
    spotlighted, doi: 10.1021/jacs.1026b09412

    [14]        jilai li, shaodong zhou, jun zhang, maria schlangen, thomas weiske, dandamudi usharani, sason shaik*, helmut schwarz*
    electronic origins of the variable efficiency of room-temperature methane activation by homo- and heteronuclear cluster oxide cations [xyo2]+ (x, y = al, si, mg): competition between proton-coupled electron transfer versus hydrogen-atom transfer
    j. am. chem. soc. 2016, 138, 7973╟7981. doi: 10.1021/jacs.6b03798

    [15]        jilai li, shaodong zhou, xiao-nan wu, shiya tang, maria schlangen, helmut schwarz*
    on the mechanisms of hydrogen-atom transfer from water to the heteronuclear oxide cluster [ga2mg2o5]•+: remarkable electronic structure effects
    angew. chem. int. ed. 2015, 54, 11861╟11864. doi: 10.1002/anie.201505336

    [16]        jilai li, xiao-nan wu, shaodong zhou, shiya tang, maria schlangen, helmut schwarz*
    distinct mechanistic differences in the hydrogen-atom transfer from methane and water by the heteronuclear oxide cluster [ga2mgo4]•+
    angew. chem. int. ed. 2015, 54, 12298╟12302. doi: 10.1002/anie.201584261
    highlighted as frontispiece article

    [17]        jilai li, xiao-nan wu, maria schlangen, shaodong zhou, patricio gonzález-navarrete, shiya tang, helmut schwarz*
    on the role of the electronic structure of the heteronuclear oxide cluster [ga2mg2o5]•+ in the thermal activation of methane and ethane: an unusual doping effect
    angew. chem. int. ed. 2015, 54, 5074-5078. doi: 10.1002/anie.201412441
    selected as vip

    researcherid: http://www.researcherid.com/rid/m-5210-2013

    web of science researcherid: m-5210-2013

    orcid: https://orcid.org/0000-0002-3363-9164

    2025考研復試標準班

    2025考研復試特訓班【1v1個性批改+模擬面試+聽口糾音】

    2025考研復試伴學班·【初試不過,協議退費】

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