功能材料
功能材料
공능재료
JOURNAL OF FUNCTIONAL MATERIALS
2012年
21期
2946-2949
,共4页
徐习斌%易早%陈艳%李喜波%罗炳池%罗江山%吴卫东%唐永建%易有根
徐習斌%易早%陳豔%李喜波%囉炳池%囉江山%吳衛東%唐永建%易有根
서습빈%역조%진염%리희파%라병지%라강산%오위동%당영건%역유근
玻璃基底%Au纳米粒子结构阵列%DDA%表面等离子体共振吸收
玻璃基底%Au納米粒子結構陣列%DDA%錶麵等離子體共振吸收
파리기저%Au납미입자결구진렬%DDA%표면등리자체공진흡수
glass substrates%ordered Au nanosphere arrays%DDA%SPR
采用离散偶极子近似方法(discrete dipole approximation,简称DDA)从理论上对玻璃基底上不同粒径的Au纳米粒子结构阵列的消光光谱以及消光峰与纳米粒子粒径的关系进行了研究。计算结果显示玻璃基底上的Au纳米粒子结构阵列的消光谱中出现明显区别于Au单体纳米粒子的共振峰,玻璃基底上的Au纳米粒子结构阵列的消光性质与单体纳米粒子的粒径密切相关,随着纳米粒径的增大表面等离子体共振吸收峰出现明显红移,并且在粒径〉40nm时出现多峰吸收现象。计算结果与实验结果基本一致。给出玻璃基底上的Au纳米粒子结构阵列的共振吸收峰随单体纳米粒子粒径变化的关系图。对Au纳米结构阵列的吸收机制进行系统的理论分析。
採用離散偶極子近似方法(discrete dipole approximation,簡稱DDA)從理論上對玻璃基底上不同粒徑的Au納米粒子結構陣列的消光光譜以及消光峰與納米粒子粒徑的關繫進行瞭研究。計算結果顯示玻璃基底上的Au納米粒子結構陣列的消光譜中齣現明顯區彆于Au單體納米粒子的共振峰,玻璃基底上的Au納米粒子結構陣列的消光性質與單體納米粒子的粒徑密切相關,隨著納米粒徑的增大錶麵等離子體共振吸收峰齣現明顯紅移,併且在粒徑〉40nm時齣現多峰吸收現象。計算結果與實驗結果基本一緻。給齣玻璃基底上的Au納米粒子結構陣列的共振吸收峰隨單體納米粒子粒徑變化的關繫圖。對Au納米結構陣列的吸收機製進行繫統的理論分析。
채용리산우겁자근사방법(discrete dipole approximation,간칭DDA)종이론상대파리기저상불동립경적Au납미입자결구진렬적소광광보이급소광봉여납미입자립경적관계진행료연구。계산결과현시파리기저상적Au납미입자결구진렬적소광보중출현명현구별우Au단체납미입자적공진봉,파리기저상적Au납미입자결구진렬적소광성질여단체납미입자적립경밀절상관,수착납미립경적증대표면등리자체공진흡수봉출현명현홍이,병차재립경〉40nm시출현다봉흡수현상。계산결과여실험결과기본일치。급출파리기저상적Au납미입자결구진렬적공진흡수봉수단체납미입자립경변화적관계도。대Au납미결구진렬적흡수궤제진행계통적이론분석。
The method discrete dipole approximation (DDA) was used to theoretically calculate the extinction spectrum of ordered Au nanosphere arrays with different radius on the glass substrate. The DDA simulation of the ultraviolet-visible (UV-Vis) extinction spectra of ordered Au nanosphere arrays with various radius shows different optical properties from isolated Au individuals. The ordered Au nanosphere arrays on the glass sub- strate strongly depend on the radius of Au individuals, that is to say, with the increase of the radius the reso- nance peak was obviously red-shifted and with the radius greater than 40nm there appear to be many resonance peaks not less than two. The calculation result was consistent well with the experiment result. The relationship of the resonance wavelength of ordered array of Au with different radius of single Au sphere was gived. Finally, the resonance regime of ordered Au nanosphere arrays is discussed.