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個人簡況
1995年(nian)(nian)畢業(ye)于(yu)原冶金工(gong)業(ye)部(bu)鋼鐵(tie)研(yan)(yan)究(jiu)總(zong)院,獲(huo)工(gong)學(xue)(xue)博士學(xue)(xue)位;從1995年(nian)(nian)-2011年(nian)(nian)先后(hou)在捷克國(guo)(guo)家科學(xue)(xue)院材(cai)料物(wu)理研(yan)(yan)究(jiu)所,德(de)國(guo)(guo)馬普(pu)學(xue)(xue)會(hui)弗(fu)里茨-哈伯研(yan)(yan)究(jiu)所,美國(guo)(guo)能源部(bu)橡樹嶺國(guo)(guo)家實驗(yan)室(shi),美國(guo)(guo)再(zai)生能源國(guo)(guo)家實驗(yan)室(shi),馬里蘭大(da)學(xue)(xue),威斯康星(xing)大(da)學(xue)(xue),加(jia)州理工(gong)學(xue)(xue)院等(deng)大(da)學(xue)(xue)和研(yan)(yan)究(jiu)機構及硅谷納米(mi)高科技公司工(gong)作(zuo),2011年(nian)(nian)7月回國(guo)(guo)到有(you)(you)研(yan)(yan)科技集團(tuan)(北京(jing)有(you)(you)色金屬研(yan)(yan)究(jiu)總(zong)院)工(gong)作(zuo)至(zhi)今,曾任(ren)(ren)有(you)(you)研(yan)(yan)粉末新材(cai)料(北京(jing))有(you)(you)限(xian)公司研(yan)(yan)發部(bu)主任(ren)(ren)和總(zong)工(gong)程(cheng)師(shi),先進材(cai)料計算與模擬(ni)仿真中心主任(ren)(ren),有(you)(you)色金屬材(cai)料制備加(jia)工(gong)國(guo)(guo)家重(zhong)點實驗(yan)室(shi)副主任(ren)(ren),有(you)(you)色金屬研(yan)(yan)究(jiu)總(zong)院副總(zong)工(gong)程(cheng)師(shi),北京(jing)市(shi)金屬粉末工(gong)程(cheng)技術(shu)研(yan)(yan)究(jiu)中心主任(ren)(ren)等(deng)職。現(xian)任(ren)(ren)有(you)(you)研(yan)(yan)集團(tuan)首席(xi)專家、材(cai)料計算中心技術(shu)主任(ren)(ren)。
發表學術(shu)論文(wen)120余篇(pian),授權中(zhong)外(wai)專利20余項(xiang)(xiang),在(zai)(zai)美國(guo)物理(li)學會(APS)年(nian)會和材(cai)料(liao)學會(MRS)年(nian)會等(deng)會議作學術(shu)報告100余次。研究興趣在(zai)(zai)于通過材(cai)料(liao)的(de)(de)計(ji)算機(ji)模(mo)擬從原(yuan)子(zi)和電子(zi)層次上理(li)解和分(fen)析材(cai)料(liao)的(de)(de)力學、熱學、電磁學、光學、催(cui)化(hua)(hua)、材(cai)料(liao)失(shi)效等(deng)物理(li)化(hua)(hua)學性(xing)能,實(shi)現優化(hua)(hua)材(cai)料(liao)性(xing)能及(ji)設計(ji)出具有優異(yi)性(xing)能的(de)(de)新型(xing)材(cai)料(liao)。納(na)米硒化(hua)(hua)鎘光催(cui)化(hua)(hua)轉化(hua)(hua)二氧(yang)化(hua)(hua)碳工作被《科學美國(guo)人》以“人造樹葉”為(wei)(wei)題加(jia)以報道,并(bing)被APS NEWS [February 2003 Vol. 12, No. 2]列為(wei)(wei)在(zai)(zai)凝(ning)聚態/材(cai)料(liao)物理(li)領域the year’s top physics research工作之(zhi)一(yi);提(ti)出cluster-doping方(fang)(fang)法解決(jue)寬帶隙半(ban)導體摻雜(za)難題,獲得實(shi)驗工作驗證 [JAP 103,103704 (2008)]; 為(wei)(wei)高點陣錯配度半(ban)導體異(yi)質外(wai)延生長所形成的(de)(de)尺寸(cun)一(yi)致量子(zi)點及(ji)其(qi)穩定性(xing)提(ti)供理(li)論解釋(shi); 用精確第一(yi)原(yuan)理(li)方(fang)(fang)法計(ji)算材(cai)料(liao)拉伸強度,該工作作為(wei)(wei)在(zai)(zai)材(cai)料(liao)力學性(xing)能第一(yi)原(yuan)理(li)計(ji)算方(fang)(fang)面(mian)早(zao)期為(wei)(wei)數不(bu)多的(de)(de)文(wen)獻之(zhi)一(yi)而獲得廣泛關注。承擔(dan)國(guo)家及(ji)地方(fang)(fang)政府等(deng)各(ge)類項(xiang)(xiang)目多項(xiang)(xiang)。獲部級科技進步獎(jiang)3項(xiang)(xiang)(一(yi)等(deng)獎(jiang)1項(xiang)(xiang);二等(deng)獎(jiang)2項(xiang)(xiang))。
代表性論文:
1. Cluster-Doping Approach for Wide-Gap Semiconductors: The Case of -Type ZnO. L.G. Wang and A. Zunger. Physical Review Letters 90, 256401 (2003).
2. The Role of the Nanoscale in Surface Reactions: CO2 on CdSe. L.G. Wang, S.J. Pennycook and S.T. Pantelides. Physical Review Letters 89, 075506 (2002).
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3. Formation and Stability of Self-assembled Coherent Islands in Highly Mismatched Heteroepitaxy. L.G. Wang, P. Kratzer, M. Scheffler and N. Moll. Physical Review Letters 82, 4042 (1999).
4. Theoretical Tensile Stress in Tungsten Single Crystals by Full-potential First-principles Calculations. M. Šob, L.G. Wang and V. Vitek. Materials Science and Engineering: A 234, 1075 (1997).
5. Both Sn and Zn Single-atoms on CuO Catalyst Synergistically Promote Dimethyldichlorosilane Synthesis, National Science Review (國內(nei)期刊)
Update 2020.02
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