Discovery and manipulation of van der Waals polarons in Sb2O3 ultrathin molecular crystal

Discovery and manipulation of van der Waals polarons in Sb2O3 ultrathin molecular crystal

ZhiHao Zhang, Linlu Wu, Mao-Peng Miao, Hao-Jun Qin, Gan Chen, Min Cai, Lixin Liu, Lan-Fang Zhu, Wen-Hao Zhang, Tianyou Zhai, Wei Ji, and Ying Shuang Fu

Manipulating single electrons at the atomic scale is vital for mastering complex surface processes governed by the transfer of individual electrons. Polarons, comprised of electrons stabilized by electron-phonon coupling, offer a pivotal medium for such manipulation. Here, using scanning tunneling microscopy and spectroscopy (STM/STS) and density functional theory (DFT) calculations, we report the identification and manipulation of a new type of polaron, dubbed van der Waals (vdW) polaron, within mono- to tri-layer ultrathin films composed of Sb2O3 molecules that are bonded via vdW attractions. The Sb2O3 films were grown on a graphene-covered SiC(0001) substrate via molecular beam epitaxy. Unlike prior molecular polarons, STM imaging observed polarons at the interstitial sites of the molecular film, presenting unique electronic states and localized band bending. DFT calculations revealed the lowest conduction band as an intermolecular bonding state, capable of ensnaring an extra electron through locally diminished intermolecular distances, thereby forming an intermolecular vdW polaron. We also demonstrated the ability to generate, move, and erase such vdW polarons using an STM tip. Our work uncovers a new type of polaron stabilized by coupling with intermolecular vibrations where vdW interactions dominate, paving the way for designing atomic-scale electron transfer processes, and enabling precise tailoring of electron-related properties and functionalities.

六名成员参加“第四届团簇科学与原子制造学术研讨会”

六名成员参加“第四届团簇科学与原子制造学术研讨会”

2023年4月21-23日,中国人民大学物理学院季威教授携刘南舒博士后以及郭的坪、伍琳璐、官雨柔、戴佳琦等四名博士生赴西安参加了第四届“团簇科学与原子制造学术研讨会”。季威教授受会议主办方邀请作了题为“低维超原子晶体中的特殊电子态”的报告。

季威教授在作报告

刘南舒、郭的坪、伍琳璐、官雨柔、戴佳琦等成员分别在会议中展示了题为 “Magnetic coupling in superatom Mn@Sn12 assembly” (Liu), “Controllable dimensionality conversion between 1D and 2D CrCl3 magnetic nanostructures” (Guo), “Interweaving Polar Charge Orders in a Layered Metallic Superatomic Crystal” (Wu), “Magnetization-distance oscillation induced by competing interactions in Cr doped Au6Te12Se8 superatomic assembly” (Guan) 和“One-Step Exfoliation Method for Plasmonic Activation of Large-Area 2D Crystals” (Dai) 的墙报,均获得会议主办方颁发的优秀墙报奖状。

(左图)不愿透露样貌的郭师姐和她的墙报;(右图)伍琳璐和戴佳琦在她们的墙报前合影

第四届“团簇科学与原子制造学术研讨会”由西安交通大学物理学院物质非平衡合成与调控教育部重点实验室、南京大学物理学院和大连理工大学三束材料改性教育部重点实验室联合主办;西安交通大学激光与粒子束科学技术研究所承办。会议主题是交流近年来原子与分子及团簇物理、原子制造和纳米科技方面的研究进展,探讨本领域的未来发展方向。季威研究组成员为参与本次会议做了充分准备,并期待下次参会的科研成果能有在团簇及原子制造领域有新的突破。

Improving the band alignment at PtSe2 grain boundaries with selective adsorption of TCNQ

Improving the band alignment at PtSe2 grain boundaries with selective adsorption of TCNQ

Nano Research 16, 3358-3363 (2023)

Yanhui Hou#, Ziqiang Xu#, Yan Shao, Linlu Wu, Zhongliu Liu, Genyu Hu, Wei Ji, Jingsi Qiao*, Xu Wu*, Hong-Jun Gao & Yeliang Wang*

Grain boundaries in two-dimensional (2D) semiconductors generally induce distorted band alignment and interfacial charge, which impair their electronic properties for device applications. Here, we report the improvement of band alignment at the grain boundaries of PtSe2, a 2D semiconductor, with selective adsorption of a presentative organic acceptor, tetracyanoquinodimethane (TCNQ). TCNQ molecules show selective adsorption at the PtSe2 grain boundary with strong interfacial charge. The adsorption of TCNQ distinctly improves the band alignment at the PtSe2 grain boundaries. With the charge transfer between the grain boundary and TCNQ, the local charge is inhibited, and the band bending at the grain boundary is suppressed, as revealed by the scanning tunneling microscopy and spectroscopy (STM/S) results. Our finding provides an effective method for the advancement of the band alignment at the grain boundary by functional molecules, improving the electronic properties of 2D semiconductors for their future applications.

DOI:10.1007/s12274-022-5009-8

伍琳璐 博士生 Wu, Linlu (P6 Student)

伍琳璐 博士生 Wu, Linlu (P6 Student)

基本信息
伍琳璐:2020级博士生
办公地点:北园物理楼206
电子邮箱:wulinlu@ruc.edu.cn
电  话:+86-10-62517997
传  真:+86-10-62517887
邮  编:100872

教育经历

(1) 2018-09 至今, 中国人民大学, 物理学系, 硕博连读,在读
(2) 2014-09 至 2018-06, 中国人民大学, 物理学系, 本科,理学学士

研究方向

利用第一性原理计算方法,结合部分实验现象,探索低维材料及表面和界面体系的新奇物性及调控机制,包括:
(1) 超原子晶体中的相互作用及新奇电荷序
(2) 低维材料的磁学性质及其调控
(3) 低维体系的电子结构、声子、光学等性质的模拟和理解
(3) 表面和界面体系的电子结构及相互作用

代表性论文

(1) Luojun Du#*, Yanchong Zhao#, Linlu Wu#, Xuerong Hu#, Lide Yao, Yadong Wang, Xueyin Bai, Yunyun Dai, Jingsi Qiao, Md Gius Uddin, Xiaomei Li, Jouko Lahtinen, Xuedong Bai, Guangyu Zhang, Wei Ji* & Zhipei Sun*, Giant anisotropic photonics in the 1D van der Waals semiconductor fibrous red phosphorus, Nat. Commun 12, 4822 (2021)

(2) Shuya Xing#, Linlu Wu#, Zilu Wang#, Xu Chen#, Haining Liu, Shuo Han, Le Lei, Linwei Zhou, Qi Zheng, Li Huang, Xiao Lin, Shanshan Chen, Liming Xie, Xiaolong Chen, Hong-Jun Gao, Zhihai Cheng*, Jiangang Guo*, Shancai Wang* & Wei Ji*, Interweaving polar charge orders in a layered metallic super-atomic, Phys. Rev. X 12, 041034 (2022)

(3) Linlu Wu#, Linwei Zhou#, Xieyu Zhou, Cong Wang* & Wei Ji*, In-plane epitaxy-strain-tuning intralayer and interlayer magnetic coupling in CrSe2 and CrTe2 monolayers and bilayers, Phys. Rev. B 106, L081401 (2022)

(4) Jialei Miao#, Linlu Wu#, Zheng Bian, Qinghai Zhu, Tianjiao Zhang, Xin Pan, Jiayang Hu, Wei Xu, Yeliang Wang, Yang Xu, Bin Yu, Wei Ji, Xiaowei Zhang*, Jingsi Qiao*, Paolo Samorì*, and Yuda Zhao*, A “Click” Reaction to Engineer MoS2 Field-Effect Transistors with Low Contact Resistance, ACS Nano, 16, 12, 20647–20655 (2022)

(5) Yanping Guo#, Linlu Wu#, Jinghao Deng#, Linwei Zhou, Wei Jiang, Shuangzan Lu, Da Huo, Jiamin Ji, Yusong Bai, Xiaoyu Lin, Shunping Zhang, Hongxing Xu, Wei Ji* & Chendong Zhang*, Band alignment and interlayer hybridization in monolayer organic/WSe2 heterojunction, Nano Res. 15, 1276–1281 (2022)

(6) Yu Wang#, Linlu Wu#, Zheng Wei, Zijia Liu, Peng Cheng, Yiqi Zhang, Baojie Feng, Guangyu Zhang, Wei Ji* & Kehui Wu*, Real-space detection and manipulation of two-dimensional quantized well states in few-layered MoS2, Phys. Rev. B 105, L081404 (2022)

(7) Zilu Wang#, Qiangwei Yin#, Shaohua Yan#, Linlu Wu#, Xuchuan Wu, Man Li, Wenhua Song, Qingxin Liu, Huan Ma, Wei Ji*, Hechang Lei* & Shancai Wang*, Three-dimensional charge density wave observed by angle-resolved photoemission spectroscopy in 1T−VSe2, Phys. Rev. B 104, 155134 (2021)

(8) Yanhui Hou#, Ziqiang Xu#, Yan Shao, Linlu Wu, Zhongliu Liu, Genyu Hu, Wei Ji*, Jingsi Qiao*, Xu Wu*, Hong-Jun Gao & Yeliang Wang*, Improving the band alignment at PtSe2 grain boundaries with selective adsorption of TCNQ, Nano Res. (2022)