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個人(ren)簡況
1995年畢業于原冶金工業部鋼(gang)鐵研(yan)(yan)(yan)究(jiu)(jiu)總(zong)(zong)院,獲(huo)工學(xue)博士學(xue)位;從1995年-2011年先后在(zai)捷克國(guo)(guo)家(jia)(jia)科學(xue)院材料(liao)物理研(yan)(yan)(yan)究(jiu)(jiu)所,德(de)國(guo)(guo)馬普學(xue)會弗里茨-哈伯研(yan)(yan)(yan)究(jiu)(jiu)所,美國(guo)(guo)能(neng)源部橡樹嶺國(guo)(guo)家(jia)(jia)實(shi)驗室,美國(guo)(guo)再生能(neng)源國(guo)(guo)家(jia)(jia)實(shi)驗室,馬里蘭大(da)學(xue),威(wei)斯(si)康星大(da)學(xue),加州理工學(xue)院等大(da)學(xue)和研(yan)(yan)(yan)究(jiu)(jiu)機構及硅谷納米高科技公(gong)司(si)工作,2011年7月回國(guo)(guo)到有(you)(you)研(yan)(yan)(yan)科技集團(tuan)(北京(jing)有(you)(you)色(se)金屬(shu)(shu)研(yan)(yan)(yan)究(jiu)(jiu)總(zong)(zong)院)工作至今,曾任(ren)(ren)有(you)(you)研(yan)(yan)(yan)粉末新材料(liao)(北京(jing))有(you)(you)限公(gong)司(si)研(yan)(yan)(yan)發部主(zhu)任(ren)(ren)和總(zong)(zong)工程師(shi),先進材料(liao)計算與(yu)模(mo)擬(ni)仿真(zhen)中(zhong)心(xin)主(zhu)任(ren)(ren),有(you)(you)色(se)金屬(shu)(shu)材料(liao)制備加工國(guo)(guo)家(jia)(jia)重點實(shi)驗室副(fu)(fu)主(zhu)任(ren)(ren),有(you)(you)色(se)金屬(shu)(shu)研(yan)(yan)(yan)究(jiu)(jiu)總(zong)(zong)院副(fu)(fu)總(zong)(zong)工程師(shi),北京(jing)市金屬(shu)(shu)粉末工程技術研(yan)(yan)(yan)究(jiu)(jiu)中(zhong)心(xin)主(zhu)任(ren)(ren)等職。現(xian)任(ren)(ren)有(you)(you)研(yan)(yan)(yan)集團(tuan)首席專家(jia)(jia)、材料(liao)計算中(zhong)心(xin)技術主(zhu)任(ren)(ren)。
發(fa)表學(xue)術論(lun)文120余(yu)篇,授權中外專利(li)20余(yu)項,在(zai)(zai)(zai)美(mei)國物理(li)學(xue)會(hui)(hui)(hui)(APS)年(nian)會(hui)(hui)(hui)和材(cai)料(liao)(liao)學(xue)會(hui)(hui)(hui)(MRS)年(nian)會(hui)(hui)(hui)等會(hui)(hui)(hui)議作(zuo)(zuo)(zuo)學(xue)術報告(gao)100余(yu)次。研(yan)究興(xing)趣在(zai)(zai)(zai)于(yu)通(tong)過材(cai)料(liao)(liao)的計算(suan)機模擬從原子(zi)和電子(zi)層次上理(li)解(jie)和分析材(cai)料(liao)(liao)的力學(xue)、熱(re)學(xue)、電磁(ci)學(xue)、光(guang)學(xue)、催(cui)化(hua)(hua)(hua)、材(cai)料(liao)(liao)失(shi)效等物理(li)化(hua)(hua)(hua)學(xue)性能,實現優化(hua)(hua)(hua)材(cai)料(liao)(liao)性能及設(she)計出具有(you)優異性能的新型材(cai)料(liao)(liao)。納(na)米硒化(hua)(hua)(hua)鎘光(guang)催(cui)化(hua)(hua)(hua)轉(zhuan)化(hua)(hua)(hua)二氧(yang)化(hua)(hua)(hua)碳工(gong)作(zuo)(zuo)(zuo)被《科學(xue)美(mei)國人》以“人造樹(shu)葉”為(wei)題(ti)加以報道,并被APS NEWS [February 2003 Vol. 12, No. 2]列為(wei)在(zai)(zai)(zai)凝聚態(tai)/材(cai)料(liao)(liao)物理(li)領(ling)域the year’s top physics research工(gong)作(zuo)(zuo)(zuo)之一;提出cluster-doping方法解(jie)決寬(kuan)帶隙半導(dao)體(ti)摻雜(za)難題(ti),獲得實驗工(gong)作(zuo)(zuo)(zuo)驗證(zheng) [JAP 103,103704 (2008)]; 為(wei)高點陣錯配度半導(dao)體(ti)異質外延生長所形成的尺寸一致量(liang)子(zi)點及其穩定性提供理(li)論(lun)解(jie)釋; 用精確第一原理(li)方法計算(suan)材(cai)料(liao)(liao)拉(la)伸(shen)強度,該工(gong)作(zuo)(zuo)(zuo)作(zuo)(zuo)(zuo)為(wei)在(zai)(zai)(zai)材(cai)料(liao)(liao)力學(xue)性能第一原理(li)計算(suan)方面早(zao)期為(wei)數不多的文獻之一而獲得廣泛關注。承擔國家及地(di)方政府(fu)等各類項目多項。獲部級(ji)科技進步獎(jiang)3項(一等獎(jiang)1項;二等獎(jiang)2項)。
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(guo)內期刊)
Update 2020.02
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