Advanced Energy Materials:2016-6(16)
柔性可穿戴超級(jí)電容器:智能手表帶實(shí)現(xiàn)彎曲佩戴,無(wú)論是動(dòng)態(tài)還是晶態(tài)彎曲,都具有較好的電化學(xué)穩(wěn)定性。配有體溫響應(yīng)的形狀記憶功能,手腕觸碰一下,就可以自動(dòng)感應(yīng)戴在手上!
參考文獻(xiàn):Lingyang Liu, Baoshou Shen, Xingbin Yan et al. Watchband-Like Supercapacitors with Body Temperature Inducible Shape Memory Ability. Advanced Energy Materials 2016.
Advanced Materials:2016-28(33)
合金納米催化劑:低溫CVD制備Pt3Co納米顆粒,優(yōu)異的ORR性能!
參考文獻(xiàn):Dong Sung Choi, Sang Ouk Kim, Heeyeon Kim et al. Low-Temperature Chemical Vapor Deposition Synthesis of Pt–Co Alloyed Nanoparticles with Enhanced Oxygen Reduction Reaction Catalysis. Adv. Mater. 2016.
Nanoscale:2016-8(35)
紙基石墨烯電子器件:利用脈沖紫外激光技術(shù),在紙上噴墨打印3D納米結(jié)構(gòu)的石墨烯,構(gòu)建柔性電子器件。
參考文獻(xiàn):Suprem R. Das, Qiong Nian, Gary J. Cheng, Jonathan C. Claussen et al. 3D nanostructured inkjet printed graphene via UV-pulsed laserirradiation enables paper-based electronics and electrochemical devices. Nanoscale, 2016, 8, 15870-15879.
Nano Letters:2016-16(8)
單分子電學(xué)控制:兩個(gè)Au電極與單個(gè)自旋交叉分子原子級(jí)接觸,通過(guò)電極移動(dòng),增強(qiáng)單分子導(dǎo)電性。
參考文獻(xiàn):Riccardo Frisenda, Marcel Mayor, Herre S. J. van der Zant et al. Stretching-Induced Conductance Increase in a Spin-Crossover Molecule. Nano Lett., 2016, 16, 4733–4737.
JACS:2016-138 (34)
有機(jī)納米管:發(fā)展了一種“從螺旋體到管(helix-to-tube)”策略,線性高分子經(jīng)過(guò)螺旋折疊和光誘導(dǎo)交聯(lián),構(gòu)建共價(jià)有機(jī)納米管。
參考文獻(xiàn):Kaho Maeda, Hideto Ito, and Kenichiro Itami et al. Construction of Covalent Organic Nanotubes by Light-Induced Cross-Linking of Diacetylene-Based Helical Polymers. J. Am. Chem. Soc., 2016, 138,11001–11008.
ACS Nano: 2016-10(8)
納米超聲造影劑:基因編碼的氣泡式納米結(jié)構(gòu)聲學(xué)蛋白經(jīng)過(guò)表面基因改造,實(shí)現(xiàn)了諧波、多模態(tài)超聲成像,并具有了特異性細(xì)胞靶向功能。
參考文獻(xiàn):Anupama Lakshmanan, Mikhail G. Shapiroet al. Molecular Engineering of Acoustic Protein Nanostructures. ACS Nano,2016, 10, 7314–7322.
Angew:2016-55(37)
液體彈珠滑梯效應(yīng):在較低基底厚度的情況下,彈珠流動(dòng)行為導(dǎo)致液體表面變形,在重力驅(qū)使下,液體彈珠發(fā)生反Marangoni流動(dòng),稱之為“滑梯效應(yīng)”。
參考文獻(xiàn):Nikita Kavokine, Damien Baigl et al. Light-Driven Transport of a Liquid Marble with and against Surface Flows. Angew 2016, 55, 11183-11187.
Nature nanotechnology:2016-11(8)
相變仿生神經(jīng)元:通過(guò)單個(gè)納米器件模仿神經(jīng)膜收集和轉(zhuǎn)化后突蛋白信號(hào),開發(fā)了一種基于硫族化物的相變材料,將助力神經(jīng)計(jì)算學(xué)應(yīng)用。
參考文獻(xiàn):Tomas Tuma, Evangelos Eleftheriou et al. Stochastic phase-change neurons. Nature Nanotechnology 2016, 11, 693–699.
ACS Catalysis:2016-6(9)
選擇性催化:間金屬型PdZn催化劑優(yōu)先吸附并活化醇而不是胺,因此可用于醇類物質(zhì)的高選擇性N-烷基化。
參考文獻(xiàn):Shinya Furukawa, Ryohei Suzuki, and Takayuki Komatsu. Selective Activation of Alcohols in the Presence of Reactive Amines over Intermetallic PdZn: Efficient Catalysis for Alcohol-Based N-Alkylation of Various Amines. ACS Catal., 2016, 6, 5946–5953.
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