Tuning the reactivity of semiconductor surfaces by functionalization with amines of different basicity

被引:52
作者
Bent, Stacey F. [1 ]
Kachian, Jessica S. [1 ]
Rodriguez-Reyes, Juan Carlos F. [2 ]
Teplyakov, Andrew V. [2 ]
机构
[1] Stanford Univ, Dept Chem Engn, Stanford, CA 94305 USA
[2] Univ Delaware, Dept Chem & Biochem, Newark, DE 19716 USA
基金
美国国家科学基金会;
关键词
adsorption; organic; nucleophile; spectroscopy; DIELS-ALDER REACTIONS; ORGANIC-MOLECULES; SI(100)-2 X-1; GE(100)-2 X-1; CHEMISTRY; ADSORPTION; SILICON; DENSITY; DISSOCIATION; SPECTROSCOPY;
D O I
10.1073/pnas.1006656107
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Surface functionalization of semiconductors has been the backbone of the newest developments in microelectronics, energy conversion, sensing device design, and many other fields of science and technology. Over a decade ago, the notion of viewing the surface itself as a chemical reagent in surface reactions was introduced, and adding a variety of new functionalities to the semiconductor surface has become a target of research for many groups. The electronic effects on the substrate have been considered as an important consequence of chemical modification. In this work, we shift the focus to the electronic properties of the functional groups attached to the surface and their role on subsequent reactivity. We investigate surface functionalization of clean Si(100)-2 x 1 and Ge(100)-2 x 1 surfaces with amines as a way to modify their reactivity and to fine tune this reactivity by considering the basicity of the attached functionality. The reactivity of silicon and germanium surfaces modified with ethylamine (CH(3)CH(2)NH(2)) and aniline (C(6)H(5)NH(2)) is predicted using density functional theory calculations of proton attachment to the nitrogen of the adsorbed amine to differ with respect to a nucleophilic attack of the surface species. These predictions are then tested using a model metalorganic reagent, tetrakis(dimethylamido) titanium (((CH(3))(2)N)(4)Ti, TDMAT), which undergoes a transamination reaction with sufficiently nucleophilic amines, and the reactivity tests confirm trends consistent with predicted basicities. The identity of the underlying semiconductor surface has a profound effect on the outcome of this reaction, and results comparing silicon and germanium are discussed.
引用
收藏
页码:956 / 960
页数:5
相关论文
共 42 条
[1]   MANIPULATION OF MATTER AT THE ATOMIC AND MOLECULAR-LEVELS [J].
AVOURIS, P .
ACCOUNTS OF CHEMICAL RESEARCH, 1995, 28 (03) :95-102
[2]   Tuning the Electrical Properties of Si Nanowire Field-Effect Transistors by Molecular Engineering [J].
Bashouti, Muhammad Y. ;
Tung, Raymond T. ;
Haick, Hossam .
SMALL, 2009, 5 (23) :2761-2769
[3]   A NEW MIXING OF HARTREE-FOCK AND LOCAL DENSITY-FUNCTIONAL THEORIES [J].
BECKE, AD .
JOURNAL OF CHEMICAL PHYSICS, 1993, 98 (02) :1372-1377
[4]   Organic functionalization of group IV semiconductor surfaces: principles, examples, applications, and prospects [J].
Bent, SF .
SURFACE SCIENCE, 2002, 500 (1-3) :879-903
[5]   An HREELS investigation of the adsorption of benzoic acid and aniline on Si(100)-2x1 [J].
Bitzer, T ;
Alkunshalie, T ;
Richardson, NV .
SURFACE SCIENCE, 1996, 368 :202-207
[6]   Azide reactions for controlling clean silicon surface chemistry: Benzylazide on Si(100)-2 x 1 [J].
Bocharov, Semyon ;
Dmitrenko, Olga ;
Mendez De Leo, Lucila P. ;
Teplyakov, Andrew V. .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2006, 128 (29) :9300-9301
[7]   Organometallic chemistry on silicon and germanium surfaces [J].
Buriak, JM .
CHEMICAL REVIEWS, 2002, 102 (05) :1271-1308
[8]   Bonding of nitrogen-containing organic molecules to the silicon(001) surface: The role of aromaticity [J].
Cao, XP ;
Coulter, SK ;
Ellison, MD ;
Liu, HB ;
Liu, JM ;
Hamers, RJ .
JOURNAL OF PHYSICAL CHEMISTRY B, 2001, 105 (18) :3759-3768
[9]   Wet chemical routes to the assembly of organic monolayers on silicon surfaces via the formation of Si-C bonds: surface preparation, passivation and functionalization [J].
Ciampi, Simone ;
Harper, Jason B. ;
Gooding, J. Justin .
CHEMICAL SOCIETY REVIEWS, 2010, 39 (06) :2158-2183
[10]   Nitro group as a means of attaching organic molecules to silicon: Nitrobenzene on Si(100)-2 x 1 [J].
De Leo, LPM ;
Teplyakov, AV .
JOURNAL OF PHYSICAL CHEMISTRY B, 2006, 110 (13) :6899-6905