Modulating Fading Time of Photochromic Compounds by Molecular Design for Erasable Inkless Printing and Anti-counterfeiting
暂无分享,去创建一个
Li-Zhen Cai | Cao-Ming Yu | Peng-Hao Wang | Qing Liu | Guo-Cong Guo | G. Guo | L. Cai | Peng-Hao Wang | Cao-Ming Yu | Qing Liu
[1] Bora Yoon,et al. Recent functional material based approaches to prevent and detect counterfeiting , 2013 .
[2] Amrita Ghosh,et al. Reversible Colorimetric Sensor for Moisture Detection in Organic Solvents and Application in Inkless Writing. , 2017, ACS applied materials & interfaces.
[3] Kenji Matsuda,et al. Photochromism of diarylethene molecules and crystals: memories, switches, and actuators. , 2014, Chemical reviews.
[4] G. Guo,et al. Stabilizing and color tuning pyrazine radicals by coordination for photochromism. , 2016, Chemical communications.
[5] Jie Pan,et al. Manipulating On/Off Single-Molecule Magnet Behavior in a Dy(III)-Based Photochromic Complex. , 2020, Journal of the American Chemical Society.
[6] Gang Xu,et al. Design Strategy for Improving Optical and Electrical Properties and Stability of Lead-Halide Semiconductors. , 2018, Journal of the American Chemical Society.
[7] H. Tian,et al. Invisible photochromism and optical anti-counterfeiting based on D–A type inverse diarylethene , 2017 .
[8] Xuemin Du,et al. Inkless multi-color writing and copying of laser-programmable photonic crystals , 2020 .
[9] J. Goicoechea,et al. Synthesis and characterization of the 4,4'-bipyridyl dianion and radical monoanion. A structural study. , 2008, Inorganic chemistry.
[10] E. Gao,et al. Selective chemochromic and chemically-induced photochromic response of a metal-organic framework. , 2020, Chemical communications.
[11] Shoutian Zheng,et al. Three viologen-derived Zn-organic materials: photochromism, photomodulated fluorescence, and inkless and erasable prints. , 2019, Dalton transactions.
[12] G. Guo,et al. Energy-dependent photochromism at room temperature for visually detecting and distinguishing X-rays. , 2018, Chemical communications.
[13] Gang Xu,et al. Photochromic hybrid containing in situ-generated benzyl viologen and novel trinuclear [Bi3Cl14]5-: improved photoresponsive behavior by the π···π interactions and size effect of inorganic oligomer. , 2014, Inorganic chemistry.
[14] S. Cordier,et al. Self-erasable inkless imprinting using a dual emitting hybrid organic-inorganic material , 2020, Materials Today.
[15] Sheng-ping Guo,et al. Recent achievements on middle and far-infrared second-order nonlinear optical materials , 2017 .
[16] G. Molnár,et al. Cellulose–spin crossover particle composite papers with reverse printing performance: a proof of concept , 2015 .
[17] G. Guo,et al. An inorganic-organic hybrid photochromic material with fast response to hard and soft X-rays at room temperature. , 2018, Chemical communications.
[18] G. Sheldrick. SHELXT – Integrated space-group and crystal-structure determination , 2015, Acta crystallographica. Section A, Foundations and advances.
[19] M. Möller,et al. Synthesis of Nonsymmetrically N,N′‐Diaryl‐Substituted 4,4′‐Bipyridinium Salts with Redox‐Tunable and Titanium Dioxide (TiO2)‐Anchoring Properties , 2005 .
[20] Gang Xu,et al. Improved photochromic properties on viologen-based inorganic-organic hybrids by using π-conjugated substituents as electron donors and stabilizers. , 2013, Inorganic chemistry.
[21] Yong Wang,et al. Concept of heat-induced inkless eco-printing. , 2012, Carbohydrate polymers.
[22] G. Guo,et al. Improving coloration time and moisture stability of photochromic viologen–carboxylate zwitterions , 2018 .
[23] B. Tang,et al. Multiple Anti-counterfeiting Guarantees from a Simple Tetraphenylethylene Derivative -- High-contrasted and Multi-state Mechanochromism and Photochromism. , 2019, Angewandte Chemie.
[24] Z. Qian,et al. Photochromism and Fluorescence Switch of Furan-Containing Tetraarylethene Luminogens with Aggregation-Induced Emission for Photo-Controlled Interface-Involved Applications. , 2020, ACS applied materials & interfaces.