Reactions of Etched, Single Crystal (111)B-Oriented InP To Produce Functionalized Surfaces with Low Electrical Defect Densities

表面改性 X射线光电子能谱 反应性(心理学) 卤化物 化学 烷基 试剂 硅烷化 Crystal(编程语言) 单晶 单层 共价键 亲核细胞 结晶学 无机化学 物理化学 化学工程 有机化学 催化作用 医学 生物化学 替代医学 病理 计算机科学 工程类 程序设计语言
作者
M. Sturzenegger,Nicholas Prokopuk,C. Kenyon,William J. Royea,Nathan S. Lewis
出处
期刊:Journal of Physical Chemistry B [American Chemical Society]
卷期号:103 (49): 10838-10849 被引量:18
标识
DOI:10.1021/jp992290f
摘要

Synthetic routes have been developed that allow attachment of a variety of functional groups to etched, single-crystal InP surfaces. Benzyl halides, alkyl halides, silyl halides, and esters reacted readily with InP to yield covalently attached overlayers on the semiconductor surface. High-resolution X-ray photoelectron spectroscopy (XPS) revealed that the functionalization chemistry was consistent with the reactivity of surficial hydroxyl groups. Analysis of the XP spectra of the (111)B-oriented (P-rich) face in ultrahigh vacuum revealed signals ascribable to a monolayer of oxidized P atoms on the etched (111)B InP surface. The lack of reactivity of the (111)A-oriented (In-rich) face with these same functionalization reagents is therefore attributed to the difference in the nucleophilicity and acidity of the In and P oxides that are present on the (111)A and (111)B faces, respectively. The coverage of benzylic groups obtained through functionalization of (111)B-oriented InP with benzyl halides was estimated to be 4 × 1014 cm2. This coverage implies that the functionalization can only proceed at alternate surface P atom sites in this system, which is expected from molecular packing considerations of these particular functional groups. Photoluminescence decay measurements were performed to investigate the electrical properties of the etched and modified InP surfaces, and these data indicated that the surface recombination velocity of the functionalized InP surface was ≈102 cm s-1. This low surface recombination velocity implies that <1 electrically active defect is present for every 105 atoms on the modified InP surface, indicating that high electrical quality can be maintained while introducing a variety of chemical functionalities onto the (111)B surface of InP.

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