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Laser-assisted vibrational control of precursor molecules in diamond synthesis

机译:金刚石合成中前体分子的激光辅助振动控制

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Control of chemical reactions is the essence of chemistry, producing designed outcomes while suppressing unwanted side products. Laser-assisted molecular vibrational control has been demonstrated to be a potential approach to influencing the outcome of a chemical reaction. In this article, we reviewed recent progress in the laser control of diamond synthesis through vibrational excitation of precursor molecules in a laser-assisted combustion chemical vapor deposition process. Significantly promoted diamond deposition rate (139 mu m/h) and crystalline quality were achieved by resonantly exciting the Q-branch (Delta J = 0) of the CH2-wagging mode (v(7) mode 949.3 cm(-1)) of C2H4 molecules. Resonant excitation of the fundamental vibrational modes is more effective in promoting diamond growth than random vibrational excitation. Control of diamond crystallographic orientation was also realized by resonantly exciting the R branch (Delta J = 1) of the CH2-wagging mode of C2H4 molecules and resulted in the preferential growth of {100}-oriented diamond crystals. Nitrogen-doped diamond films with a nitrogen concentration of 1.5 x 10(20) atoms/cm(3) were synthesized by resonantly exciting the rotational-vibrational transition (J = 5 -> J' = 6, K = 0) of the N-H wagging mode (v(2) mode) in ammonia molecules. The findings demonstrate the feasibility of laser-assisted vibrational control in steering chemical reactions and controlling reaction outcomes. (C) 2014 Elsevier Ltd. All rights reserved.
机译:化学反应的控制是化学的本质,在抑制有害副产物的同时产生设计结果。激光辅助分子振动控制已被证明是影响化学反应结果的一种潜在方法。在本文中,我们回顾了在激光辅助燃烧化学气相沉积过程中通过前驱分子的振动激发在激光合成金刚石的激光控制方面的最新进展。通过共振激发CH2摆动模式(v(7)模式949.3 cm(-1))的Q分支(Delta J = 0),可以显着提高金刚石沉积速率(139μm/ h)和晶体质量。 C2H4分子。基本振动模式的共振激发比随机振动激发更有效地促进了金刚石的生长。通过共振激发C2H4分子的CH2摆动模式的R分支(Delta J = 1),也可以实现对金刚石晶体取向的控制,并导致{100}取向金刚石晶体的优先生长。通过共振激发NH的旋转振动跃迁(J = 5-> J'= 6,K = 0),合成了氮浓度为1.5 x 10(20)原子/ cm(3)的掺氮金刚石薄膜。氨分子中的摆动模式(v(2)模式)。这些发现证明了激光辅助振动控制在指导化学反应和控制反应结果方面的可行性。 (C)2014 Elsevier Ltd.保留所有权利。

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