Lijun Zhang
Jilin University
324 Papers
774 Citations
Lijun Zhang is an academic researcher from Jilin University. The author has contributed to research in topics: Perovskite (structure) & Band gap. The author has an hindex of 59, co-authored 262 publications. Previous affiliations of Lijun Zhang include University of Colorado Boulder & National Renewable Energy Laboratory.
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Papers
Study of the B- → J/ΨK -π+π- decay and measurement of the B - → X(3872)K- branching fraction
Bernard Aubert,R. Barate,D. Boutigny,F. Couderc,J.M. Gaillard,A. Hicheur,Y. Karyotakis,J. P. Lees,V. Tisserand,A. Zghiche,A. Palano,Alexis Pompili,J. C. Chen,N. D. Qi,G. Rong,Pu Wang,Y. S. Zhu,G. Eigen,I. Ofte,B. Stugu,G. S. Abrams,A. W. Borgland,A. B. Breon,D. N. Brown,Janice Button-Shafer,R. N. Cahn,E. Charles,C. T. Day,M. S. Gill,A. V. Gritsan,Y. Groysman,R. G. Jacobsen,R. W. Kadel,J. A. Kadyk,L. T. Kerth,Yu. G. Kolomensky,G. Kukartsev,C. LeClerc,G. Lynch,A. M. Merchant,L. M. Mir,P. J. Oddone,T. J. Orimoto,M. Pripstein,N. A. Roe,M. T. Ronan,V. G. Shelkov,W. A. Wenzel,K. E. Ford,T. J. Harrison,C. M. Hawkes,S. E. Morgan,A. T. Watson,M. Fritsch,K. Goetzen,T. Held,Herbert Koch,B. Lewandowski,M. Pelizaeus,M. Steinke,J. T. Boyd,N. Chevalier,W. N. Cottingham,M. P. Kelly,Te Latham,Fergus Wilson,T. Cuhadar-Donszelmann,C. Hearty,N. S. Knecht,T. S. Mattison,J. A. McKenna,D. Thiessen,Akram Khan,Paul Kyberd,Liliana Teodorescu,V. E. Blinov,A. D. Bukin,V. P. Druzhinin,V. B. Golubev,V. N. Ivanchenko,E. A. Kravchenko,A. P. Onuchin,S. I. Serednyakov,Yu I. Skovpen,E. P. Solodov,A. N. Yushkov,D. S. Best,M. Bruinsma,M. Chao,I. Eschrich,D. Kirkby,A. J. Lankford,M. Mandelkern,R. K. Mommsen,W. Roethel,D. P. Stoker,C. D. Buchanan,Brandon L. Hartfiel,J. W. Gary,B. C. Shen,K. Wang,D. del Re,H. K. Hadavand,E. J. Hill,D. B. MacFarlane,H. P. Paar,Sh. Rahatlou,Vivek Sharma,J. W. Berryhill,Claudio Campagnari,B. Dahmes,S. L. Levy,Owen Rosser Long,A. Lu,M. A. Mazur,J. D. Richman,Wouter Verkerke,T. W. Beck,A. M. Eisner,C. A. Heusch,W. S. Lockman,T. Schalk,R. E. Schmitz,Bruce Schumm,A. Seiden,P. Spradlin,D. C. Williams,M. G. Wilson,Justin Albert,E. Chen,G. P. Dubois-Felsmann,A. Dvoretskii,D. G. Hitlin,I. Narsky,T. Piatenko,F. C. Porter,A. Ryd,A. Samuel,S. Yang,S. Jayatilleke,G. Mancinelli,B. T. Meadows,M. D. Sokoloff,T. Abe,F. Blanc,P. C. Bloom,Sai-Juan Chen,W. T. Ford,U. Nauenberg,A. Olivas,P. Rankin,J. G. Smith,Jie Zhang,Lijun Zhang,A. Chen,J. L. Harton,A. Soffer,W. H. Toki,R. J. Wilson,Q. L. Zeng,D. D. Altenburg,T. Brandt,J. Brose,T. Colberg,M. Dickopp,E. Feltresi,A. Hauke,H. M. Lacker,E. Maly,Ralph Müller-Pfefferkorn,R. Nogowski,S. Otto,A. Petzold,J. Schubert,K. R. Schubert,R. Schwierz,B. Spaan,J. E. Sundermann,Denis Bernard,G. R. Bonneaud,F. Brochard,P. Grenier,S. Schrenk,Ch Thiebaux,G. Vasileiadis,M. Verderi,D. J. Bard,P. J. Clark,D. Lavin,F. Muheim,S. Playfer,Yuehong Xie,Mirco Andreotti,Virginia Azzolini,D. Bettoni,C. Bozzi,Roberto Calabrese,G. Cibinetto,Eleonora Luppi,Matteo Negrini,L. Piemontese,Alessio Sarti,E. Treadwell,R. Baldini-Ferroli,A. Calcaterra,R. de Sangro,G. Finocchiaro,P. Patteri,M. Piccolo,A. Zallo,A. Buzzo,R. Capra,R. Contri,G. Crosetti,M. Lo Vetere,M. M. Macri,Maria Roberta Monge,S. Passaggio,C. Patrignani,Enrico Robutti,A. Santroni,Silvano Tosi,S. Bailey,G. W. Brandenburg,M. Morii,E. Won,R. S. Dubitzky,U. Langenegger,W. Bhimji,D. A. Bowerman,P. D. Dauncey,U. Egede,J. R. Gaillard,G. W. Morton,J. A. Nash,G. P. Taylor,G. J. Grenier,U. Mallik,James H Cochran,H. B. Crawley,J. W. Lamsa,W. T. Meyer,S. Prell,E. I. Rosenberg,J. I. Yi,M. Davier,G. Grosdidier,A. Hocker,Sandrine Laplace,F. Le Diberder,V. Lepeltier,A. M. Lutz,T. C. Petersen,Stéphane Plaszczynski,M. H. Schune,L. Tantot,G. Wormser,C. H. Cheng,D. J. Lange,M. C. Simani,Douglas Wright,A. J. Bevan,J. P. Coleman,J. R. Fry,E. Gabathuler,R. Gamet,R. J. Parry,D. J. Payne,R. J. Sloane,C. Touramanis,John Back,C. M. Cormack,Paul Fraser Harrison,Paul Fraser Harrison,G. B. Mohanty,C. L. Brown,G. A. Cowan,R. L. Flack,H. U. Flaecher,M. G. Green,C. E. Marker,T. R. McMahon,S. Ricciardi,F. Salvatore,G. Vaitsas,M. A. Winter,D. D. Brown,C. L. Davis,John Allison,N. R. Barlow,R. J. Barlow,P. A. Hart,M. C. Hodgkinson,G. D. Lafferty,A. J. Lyon,J. C. Williams,Amir Farbin,W. D. Hulsbergen,A. Jawahery,D. Kovalskyi,C. K. Lae,V. Lillard,D. A. Roberts,G. Blaylock,C. Dallapiccola,K. T. Flood,S. S. Hertzbach,R. R. Kofler,V. B. Koptchev,T. B. Moore,S. Saremi,H. Staengle,S. Willocq,R. Cowan,G. Sciolla,F. E. Taylor,R. K. Yamamoto,D. J.J. Mangeol,P. M. Patel,S. H. Robertson,A. Lazzaro,F. Palombo,J. M. Bauer,L. M. Cremaldi,V. Eschenburg,R. Godang,R. Kroeger,J.J. Reidy,D. A. Sanders,D. J. Summers,H. W. Zhao,S. Brunet,D. Côté,P. Taras,H. Nicholson,Nicola Cavallo,Francesco Fabozzi,Francesco Fabozzi,C. Gatto,Luca Lista,D. Monorchio,Pierluigi Paolucci,Davide Piccolo,Crisostomo Sciacca,M. A. Baak,H. J. Bulten,G. Raven,L. Wilden,Colin Jessop,J. M. LoSecco,T. A. Gabriel,T. Allmendinger,B. Brau,K. K. Gan,K. Honscheid,D. Hufnagel,H. Kagan,R. D. Kass,T. Pulliam,A. M. Rahimi,R. Ter-Antonyan,Q. K. Wong,J. E. Brau,R. Frey,Olga Igonkina,C. T. Potter,N. B. Sinev,D. M. Strom,E. Torrence,F. Colecchia,A. Dorigo,F. Galeazzi,Martino Margoni,Mauro Morandin,M. Posocco,Marcello Rotondo,F. Simonetto,R. Stroili,G. Tiozzo,C. Voci,M. Benayoun,H. Briand,J. Chauveau,P. David,Ch De La Vaissière,L. Del Buono,O. Hamon,M. J.J. John,Ph Leruste,J. Ocariz,M. Pivk,Lydia Roos,Stephane T'Jampens,G. Therin,P.F. Manfredi,Valerio Re,P. K. Behera,L. Gladney,Q. H. Guo,J.H. Panetta,F. Anulli,Maurizio Biasini,I. M. Peruzzi,M. Pioppi,Corrado Angelini,G. Batignani,S. Bettarini,M. Bondioli,F. Bucci,G. Calderini,M. Carpinelli,V. Del Gamba,F. Forti,Mario Giorgi,Alberto Lusiani,G. Marchiori,F. Martinez-Vidal,F. Martinez-Vidal,M. Morganti,Nicola Neri,E. Paoloni,Matteo Rama,G. Rizzo,F. Sandrelli,J. J. Walsh,M. Haire,D. Judd,K. Paick,D. E. Wagoner,N. Danielson,Peter Elmer,Y. P. Lau,C. Lu,V. Miftakov,James D. Olsen,A. J.S. Smith,A. V. Telnov,F. Bellini,G. Cavoto,G. Cavoto,A. D'Orazio,R. Faccini,F. Ferrarotto,F. Ferroni,M. Gaspero,L. Li Gioi,M. A. Mazzoni,S. Morganti,Maurizio Pierini,G. Piredda,F. Safai Tehrani,C. Voena,S. Christ,G. Wagner,Roland Waldi,Tim Adye,N. De Groot,B. Franek,N. I. Geddes,G. P. Gopal,E. O. Olaiya,R. Aleksan,S. Emery,A. Gaidot,S. F. Ganzhur,Pierre-Francois Giraud,G. Hamel de Monchenault,W. Kozanecki,Mathieu Langer,M. Legendre,G. W. London,B. Mayer,G. Schott,G. Vasseur,Ch Yèche,M. Zito,M. V. Purohit,A. W. Weidemann,F. X. Yumiceva,D. Aston,R. Bartoldus,Nicolas Berger,A. M. Boyarski,O. L. Buchmueller,M. R. Convery,Markus Cristinziani,G. De Nardo,D. Dong,J. Dorfan,D. Dujmic,W. Dunwoodie,E. E. Elsen,Shanhui Fan,R. C. Field,T. Glanzman,S. J. Gowdy,T. Hadig,V. Halyo,C. Hast,Tetiana Hryn'ova,W. R. Innes,M. H. Kelsey,P. Kim,M. L. Kocian,D. W. G. S. Leith,J. Libby,S. Luitz,V. Luth,H. L. Lynch,H. Marsiske,R. Messner,Dominik Müller,C. P. O'Grady,V. E. Ozcan,A. Perazzo,M. L. Perl,S. Petrak,B. N. Ratcliff,A. Roodman,A. A. Salnikov,R. H. Schindler,J. Schwiening,Gabriele Simi,A. Snyder,A. Soha,J. Stelzer,D. Su,M. K. Sullivan,J. Va'vra,Stephen Robert Wagner,M. Weaver,A. J.R. Weinstein,W. J. Wisniewski,M. Wittgen,D. H. Wright,A. K. Yarritu,C. C. Young,P. R. Burchat,A. J. Edwards,T. I. Meyer,B. A. Petersen,C. Roat,S. Ahmed,M. S. Alam,J. A. Ernst,M. A. Saeed,M. Saleem,F. R. Wappler,W. M. Bugg,M. Krishnamurthy,S. M. Spanier,R. Eckmann,Hyun-Chul Kim,J. L. Ritchie,A. Satpathy,R. F. Schwitters,Joseph Izen,I. Kitayama,X. C. Lou,S. Ye,F. Bianchi,Marcella Bona,F. Gallo,D. Gamba,C. Borean,L. Bosisio,C. Cartaro,Fabio Cossutti,G. Della Ricca,S. Dittongo,Sergio Grancagnolo,L. Lanceri,P. Poropat,L. Vitale,G. Vuagnin,R. S. Panvini,Sw. Banerjee,C. M. Brown,D. Fortin,P. D. Jackson,R. Kowalewski,J. M. Roney,H. R. Band,Sridhara Dasu,M. Datta,A. M. Eichenbaum,M. T. Graham,J. J. Hollar,J. R. Johnson,P. E. Kutter,Hui Li,R. Liu,F. Di Lodovico,A. Mihalyi,Ajit Mohapatra,Y. B. Pan,R. Prepost,A. E. Rubin,S. J. Sekula,P. Tan,J. H. von Wimmersperg-Toeller,JunJie Wu,S. L. Wu,Zongfu Yu,H. A. Neal +604 more
TL;DR: In this article, the decay of B{bar B} events collected at the BaBar detector at the PEP-II e{sup +}e{sup -} asymmetric energy storage ring was studied.
Efficient and stable Ruddlesden–Popper perovskite solar cell with tailored interlayer molecular interaction
Hui Ren,Shidong Yu,Lingfeng Chao,Yingdong Xia,Yuanhui Sun,Shouwei Zuo,Fan Li,Tingting Niu,Yingguo Yang,Huanxin Ju,Bixin Li,Haiyan Du,Xingyu Gao,Jing Zhang,Jianpu Wang,Lijun Zhang,Yonghua Chen,Wei Huang,Wei Huang,Wei Huang +19 more
TL;DR: In this article, a 2D Ruddlesden-Popper phase (2DRP) perovskite solar cells with improved photostability and environmental stability compared with their three-dimensional (3D) counterparts are presented.
510
Zn-Alloyed CsPbI3 Nanocrystals for Highly Efficient Perovskite Light-Emitting Devices
Xinyu Shen,Yu Zhang,Stephen V. Kershaw,Tianshu Li,Congcong Wang,Xiaoyu Zhang,Wenyan Wang,Daguang Li,Yinghui Wang,Min Lu,Lijun Zhang,Chun Sun,Dan Zhao,Guanshi Qin,Xue Bai,William W. Yu,Andrey L. Rogach,Andrey L. Rogach +17 more
TL;DR: The hole injection barrier of electroluminescent LEDs was effectively eliminated by using alloyed CsPb0.64Zn0.36I3 nanocrystals, and a high peak external quantum efficiency of 15.1% has been achieved.
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Trifluoroacetate induced small-grained CsPbBr3 perovskite films result in efficient and stable light-emitting devices.
Haoran Wang,Xiaoyu Zhang,Qianqian Wu,Fan Cao,Dongwen Yang,Dongwen Yang,Yuequn Shang,Zhijun Ning,Wei Zhang,Weitao Zheng,Yanfa Yan,Stephen V. Kershaw,Lijun Zhang,Andrey L. Rogach,Andrey L. Rogach,Xuyong Yang +15 more
TL;DR: Wang et al. realize smooth and pinhole-free, small-grained inorganic perovskite films with improved photoluminescence quantum yield by introducing trifluoroacetate anions to effectively passivate surface defects and control the crystal growth.
Atomically engineering activation sites onto metallic 1T-MoS 2 catalysts for enhanced electrochemical hydrogen evolution.
Yi-Chao Huang,Yuanhui Sun,Xueli Zheng,Toshihiro Aoki,Brian Pattengale,Jier Huang,Xin He,Wei Bian,Sabrina Younan,Nicholas Williams,Jun Hu,Jingxuan Ge,Ning Pu,Xingxu Yan,Xiaoqing Pan,Lijun Zhang,Yongge Wei,Jing Gu +17 more
TL;DR: This research will expand on the ability to improve the activities of various catalysts by precisely engineering atomic activation sites to achieve significant electronic modulations and improve atomic utilization efficiencies.