8 Red and Near-IR Fluorescent Two-Photon Absorption Dyes
305
Li K, Jiang Y, Ding D, Zhang X, Liu Y, Hua J, Feng S-S, Liu B (2011) Folic acid-functionalized
two-photon absorbing nanoparticles for targeted MCF-7 cancer cell imaging. Chem Commun
47:7323
Li K, Qin W, Ding D, Tomczak N, Geng J, Liu R, Liu J, Zhang X, Liu H, Liu B, Tang BZ
(2013) Photostable fluorescent organic dots with aggregation-induced emission (AIE Dots) for
noninvasive long-term cell tracing. Sci Rep 3:1150
Liu Y, Meng F, He L, Yu X, Lin W (2016) Fluorescence behavior of a unique two-photon fluorescent
probe in aggregate and solution states and highly sensitive detection of RNA in water solution
and living systems. Chem Commun 52:8838
Liu K, Kong X, Ma Y, Lin W (2017) Rational design of a robust fluorescent probe for the detection
of endogenous carbon monoxide in living zebrafish embryos and mouse tissue. Angew Chem Int
Ed 56:13489
Luo J, Xie Z, Lam JWY, Cheng L, Chen H, Qiu C, Kwok HS, Zhan X, Liu Y, Zhu D, Tang BZ
(2001)Aggregation-induced emission of 1-methyl-1,2,3,4,5-pentaphenylsilole. Chem Commun
1740
Ma Y, Tang Y, Zhao Y, Gao S, Lin W (2017) Two-photon and deep-red emission ratiometric
fluorescent probe with a large emission shift and signal ratios for sulfur dioxide: ultrafast response
and applications in living cells, brain tissues, and zebrafishes. Anal Chem 89:9388
Maeda H, Kowada T, Kikuta J, Furuya M, Shirazaki M, Mizukami S, Ishii M, Kikuchi K (2016)
Real-time intravital imaging of pH variation associated with osteoclast activity. Nat Chem Biol
12:579
Mao Z, Feng W, Li Z, Zeng L, Lv W, Liu Z (2016) NIR in, far-red out: developing a two-photon
fluorescent probe for tracking nitric oxide in deep tissue. Chem Sci 7:5230
Mao Z, Jiang H, Li Z, Zhong C, Zhang W, Liu Z (2017a) An N-nitrosation reactivity-based twophoton fluorescent probe for the specific in situ detection of nitric oxide. Chem Sci 8:4533
Mao Z, Jiang H, Song X, Hu W, Liu Z (2017b) Development of a silicon-rhodamine based nearinfrared emissive two-photon fluorescent probe for nitric oxide. Anal Chem 89:9620
Marder SR (2006) Organic nonlinear optical materials: where we have been and where we are
going. Chem Commun 131
Margineanu A, Hofkens J, Cotlet M, Habuchi S, Stefan A, Qu J, Kohl C, Müllen K, Vercammen
J, Engelborghs Y, Gensch T, De Schryver FC (2004) Photophysics of a water−soluble rylene
dye: comparison with other fluorescent molecules for biological applications. J Phys Chem B
108:12242
Mei J, Leung NLC, Kwok RTK, Lam JWY, Tang BZ (2015) Aggregation-induced emission: together
we shine, united we soar! Chem Rev 115:11718
Nicol A, Qin W, Kwok RTK, Burkhartsmeyer JM, Zhu Z, Su H, Luo W, Lam JWY, Qian J, Wong KS,
Tang BZ (2017) Functionalized AIE nanoparticles with efficient deep-red emission, mitochondrial
specificity, cancer cell selectivity and multiphoton susceptibility. Chem Sci 8:4634
Niko Y, Moritomo H, Sugihara H, Suzuki Y, Kawamata J, Konishi G (2015) A novel pyrene-based
two-photon active fluorescent dye efficiently excited and emitting in the ‘tissue optical window
(650–1100 nm).’ J Mater Chem B 3:184
Parthenopoulos DA, Rentzepis PM (1989) Three-dimensional optical storage memory. Science
245:843
Pawlicki M, Collins HA, Denning RG, Anderson HL (2009) Two-photon absorption and the design
of two-photon dyes. Angew Chem Int Ed 48:3244
Qin W, Zhang P, Li H, Lam JWY, Cai Y, Kwok RTK, Qian J, Zheng W, Tang BZ (2018) Ultrabright
red AIEgens for two-photon vascular imaging with high resolution and deep penetration. Chem
Sci 9:2705
Qu J, Kohl C, Pottek M, Müllen K (2004) Ionic perylenetetracarboxdiimides: highly fluorescent
and water-soluble dyes for biolabeling. Angew Chem Int Ed 43:1528
Reichardt C (1994) Solvatochromic dyes as solvent polarity indicators. Chem Rev 94:2319
Sarkar AR, Heo CH, Lee HW, Park KH, Suh YH, Kim HM (2014) Red emissive two-photon probe
for real-time imaging of mitochondria trafficking. Anal Chem 86:5638
305
Li K, Jiang Y, Ding D, Zhang X, Liu Y, Hua J, Feng S-S, Liu B (2011) Folic acid-functionalized
two-photon absorbing nanoparticles for targeted MCF-7 cancer cell imaging. Chem Commun
47:7323
Li K, Qin W, Ding D, Tomczak N, Geng J, Liu R, Liu J, Zhang X, Liu H, Liu B, Tang BZ
(2013) Photostable fluorescent organic dots with aggregation-induced emission (AIE Dots) for
noninvasive long-term cell tracing. Sci Rep 3:1150
Liu Y, Meng F, He L, Yu X, Lin W (2016) Fluorescence behavior of a unique two-photon fluorescent
probe in aggregate and solution states and highly sensitive detection of RNA in water solution
and living systems. Chem Commun 52:8838
Liu K, Kong X, Ma Y, Lin W (2017) Rational design of a robust fluorescent probe for the detection
of endogenous carbon monoxide in living zebrafish embryos and mouse tissue. Angew Chem Int
Ed 56:13489
Luo J, Xie Z, Lam JWY, Cheng L, Chen H, Qiu C, Kwok HS, Zhan X, Liu Y, Zhu D, Tang BZ
(2001)Aggregation-induced emission of 1-methyl-1,2,3,4,5-pentaphenylsilole. Chem Commun
1740
Ma Y, Tang Y, Zhao Y, Gao S, Lin W (2017) Two-photon and deep-red emission ratiometric
fluorescent probe with a large emission shift and signal ratios for sulfur dioxide: ultrafast response
and applications in living cells, brain tissues, and zebrafishes. Anal Chem 89:9388
Maeda H, Kowada T, Kikuta J, Furuya M, Shirazaki M, Mizukami S, Ishii M, Kikuchi K (2016)
Real-time intravital imaging of pH variation associated with osteoclast activity. Nat Chem Biol
12:579
Mao Z, Feng W, Li Z, Zeng L, Lv W, Liu Z (2016) NIR in, far-red out: developing a two-photon
fluorescent probe for tracking nitric oxide in deep tissue. Chem Sci 7:5230
Mao Z, Jiang H, Li Z, Zhong C, Zhang W, Liu Z (2017a) An N-nitrosation reactivity-based twophoton fluorescent probe for the specific in situ detection of nitric oxide. Chem Sci 8:4533
Mao Z, Jiang H, Song X, Hu W, Liu Z (2017b) Development of a silicon-rhodamine based nearinfrared emissive two-photon fluorescent probe for nitric oxide. Anal Chem 89:9620
Marder SR (2006) Organic nonlinear optical materials: where we have been and where we are
going. Chem Commun 131
Margineanu A, Hofkens J, Cotlet M, Habuchi S, Stefan A, Qu J, Kohl C, Müllen K, Vercammen
J, Engelborghs Y, Gensch T, De Schryver FC (2004) Photophysics of a water−soluble rylene
dye: comparison with other fluorescent molecules for biological applications. J Phys Chem B
108:12242
Mei J, Leung NLC, Kwok RTK, Lam JWY, Tang BZ (2015) Aggregation-induced emission: together
we shine, united we soar! Chem Rev 115:11718
Nicol A, Qin W, Kwok RTK, Burkhartsmeyer JM, Zhu Z, Su H, Luo W, Lam JWY, Qian J, Wong KS,
Tang BZ (2017) Functionalized AIE nanoparticles with efficient deep-red emission, mitochondrial
specificity, cancer cell selectivity and multiphoton susceptibility. Chem Sci 8:4634
Niko Y, Moritomo H, Sugihara H, Suzuki Y, Kawamata J, Konishi G (2015) A novel pyrene-based
two-photon active fluorescent dye efficiently excited and emitting in the ‘tissue optical window
(650–1100 nm).’ J Mater Chem B 3:184
Parthenopoulos DA, Rentzepis PM (1989) Three-dimensional optical storage memory. Science
245:843
Pawlicki M, Collins HA, Denning RG, Anderson HL (2009) Two-photon absorption and the design
of two-photon dyes. Angew Chem Int Ed 48:3244
Qin W, Zhang P, Li H, Lam JWY, Cai Y, Kwok RTK, Qian J, Zheng W, Tang BZ (2018) Ultrabright
red AIEgens for two-photon vascular imaging with high resolution and deep penetration. Chem
Sci 9:2705
Qu J, Kohl C, Pottek M, Müllen K (2004) Ionic perylenetetracarboxdiimides: highly fluorescent
and water-soluble dyes for biolabeling. Angew Chem Int Ed 43:1528
Reichardt C (1994) Solvatochromic dyes as solvent polarity indicators. Chem Rev 94:2319
Sarkar AR, Heo CH, Lee HW, Park KH, Suh YH, Kim HM (2014) Red emissive two-photon probe
for real-time imaging of mitochondria trafficking. Anal Chem 86:5638
